b6d35f6faf
Updated 4763 files with dual copyright: - Parity Technologies (UK) Ltd. - Dijital Kurdistan Tech Institute
833 lines
28 KiB
Rust
833 lines
28 KiB
Rust
// This file is part of Bizinikiwi.
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// Copyright (C) Parity Technologies (UK) Ltd. and Dijital Kurdistan Tech Institute
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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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#![cfg_attr(not(feature = "std"), no_std)]
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//! A crate which contains primitives that are useful for implementation that uses staking
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//! approaches in general. Definitions related to sessions, slashing, etc go here.
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extern crate alloc;
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use crate::currency_to_vote::CurrencyToVote;
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use alloc::{collections::btree_map::BTreeMap, vec, vec::Vec};
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use codec::{Decode, DecodeWithMemTracking, Encode, FullCodec, HasCompact, MaxEncodedLen};
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use core::ops::{Add, AddAssign, Sub, SubAssign};
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use pezsp_runtime::{
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traits::{AtLeast32BitUnsigned, Zero},
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DispatchError, DispatchResult, Perbill, RuntimeDebug, Saturating,
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};
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use scale_info::TypeInfo;
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pub mod offence;
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pub mod currency_to_vote;
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/// Simple index type with which we can count sessions.
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pub type SessionIndex = u32;
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/// Counter for the number of eras that have passed.
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pub type EraIndex = u32;
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/// Type for identifying a page.
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pub type Page = u32;
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/// Representation of a staking account, which may be a stash or controller account.
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///
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/// Note: once the controller is completely deprecated, this enum can also be deprecated in favor of
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/// the stash account. Tracking issue: <https://github.com/pezkuwichain/pezkuwi-sdk/issues/198>.
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#[derive(Clone, Debug)]
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pub enum StakingAccount<AccountId> {
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Stash(AccountId),
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Controller(AccountId),
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}
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#[cfg(feature = "std")]
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impl<AccountId> From<AccountId> for StakingAccount<AccountId> {
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fn from(account: AccountId) -> Self {
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StakingAccount::Stash(account)
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}
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}
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/// Representation of the status of a staker.
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#[derive(RuntimeDebug, TypeInfo)]
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#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize, PartialEq, Eq, Clone))]
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pub enum StakerStatus<AccountId> {
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/// Chilling.
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Idle,
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/// Declaring desire in validate, i.e author blocks.
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Validator,
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/// Declaring desire to nominate, delegate, or generally approve of the given set of others.
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Nominator(Vec<AccountId>),
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}
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/// A struct that reflects stake that an account has in the staking system. Provides a set of
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/// methods to operate on it's properties. Aimed at making `StakingInterface` more concise.
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#[derive(RuntimeDebug, Clone, Copy, Eq, PartialEq, Default)]
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pub struct Stake<Balance> {
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/// The total stake that `stash` has in the staking system. This includes the
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/// `active` stake, and any funds currently in the process of unbonding via
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/// [`StakingInterface::unbond`].
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///
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/// # Note
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///
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/// This is only guaranteed to reflect the amount locked by the staking system. If there are
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/// non-staking locks on the bonded pair's balance this amount is going to be larger in
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/// reality.
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pub total: Balance,
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/// The total amount of the stash's balance that will be at stake in any forthcoming
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/// rounds.
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pub active: Balance,
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}
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/// A generic staking event listener.
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///
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/// Note that the interface is designed in a way that the events are fired post-action, so any
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/// pre-action data that is needed needs to be passed to interface methods. The rest of the data can
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/// be retrieved by using `StakingInterface`.
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#[impl_trait_for_tuples::impl_for_tuples(10)]
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pub trait OnStakingUpdate<AccountId, Balance> {
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/// Fired when the stake amount of someone updates.
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///
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/// This is effectively any changes to the bond amount, such as bonding more funds, and
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/// unbonding.
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fn on_stake_update(_who: &AccountId, _prev_stake: Option<Stake<Balance>>) {}
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/// Fired when someone sets their intention to nominate.
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///
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/// This should never be fired for existing nominators.
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fn on_nominator_add(_who: &AccountId) {}
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/// Fired when an existing nominator updates their nominations.
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///
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/// Note that this is not fired when a nominator changes their stake. For that,
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/// `on_stake_update` should be used, followed by querying whether `who` was a validator or a
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/// nominator.
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fn on_nominator_update(_who: &AccountId, _prev_nominations: Vec<AccountId>) {}
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/// Fired when someone removes their intention to nominate, either due to chill or validating.
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///
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/// The set of nominations at the time of removal is provided as it can no longer be fetched in
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/// any way.
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fn on_nominator_remove(_who: &AccountId, _nominations: Vec<AccountId>) {}
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/// Fired when someone sets their intention to validate.
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///
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/// Note validator preference changes are not communicated, but could be added if needed.
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fn on_validator_add(_who: &AccountId) {}
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/// Fired when an existing validator updates their preferences.
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///
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/// Note validator preference changes are not communicated, but could be added if needed.
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fn on_validator_update(_who: &AccountId) {}
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/// Fired when someone removes their intention to validate, either due to chill or nominating.
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fn on_validator_remove(_who: &AccountId) {}
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/// Fired when someone is fully unstaked.
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fn on_unstake(_who: &AccountId) {}
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/// Fired when a staker is slashed.
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///
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/// * `stash` - The stash of the staker whom the slash was applied to.
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/// * `slashed_active` - The new bonded balance of the staker after the slash was applied.
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/// * `slashed_unlocking` - A map of slashed eras, and the balance of that unlocking chunk after
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/// the slash is applied. Any era not present in the map is not affected at all.
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/// * `slashed_total` - The aggregated balance that was lost due to the slash.
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fn on_slash(
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_stash: &AccountId,
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_slashed_active: Balance,
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_slashed_unlocking: &BTreeMap<EraIndex, Balance>,
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_slashed_total: Balance,
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) {
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}
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/// Fired when a portion of a staker's balance has been withdrawn.
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fn on_withdraw(_stash: &AccountId, _amount: Balance) {}
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}
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/// A generic representation of a staking implementation.
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///
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/// This interface uses the terminology of NPoS, but it is aims to be generic enough to cover other
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/// implementations as well.
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pub trait StakingInterface {
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/// Balance type used by the staking system.
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type Balance: Sub<Output = Self::Balance>
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+ Ord
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+ PartialEq
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+ Default
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+ Copy
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+ MaxEncodedLen
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+ FullCodec
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+ TypeInfo
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+ Saturating;
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/// AccountId type used by the staking system.
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type AccountId: Clone + core::fmt::Debug;
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/// Means of converting Currency to VoteWeight.
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type CurrencyToVote: CurrencyToVote<Self::Balance>;
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/// The minimum amount required to bond in order to set nomination intentions. This does not
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/// necessarily mean the nomination will be counted in an election, but instead just enough to
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/// be stored as a nominator. In other words, this is the minimum amount to register the
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/// intention to nominate.
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fn minimum_nominator_bond() -> Self::Balance;
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/// The minimum amount required to bond in order to set validation intentions.
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fn minimum_validator_bond() -> Self::Balance;
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/// Return a stash account that is controlled by a `controller`.
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///
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/// ## Note
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///
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/// The controller abstraction is not permanent and might go away. Avoid using this as much as
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/// possible.
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fn stash_by_ctrl(controller: &Self::AccountId) -> Result<Self::AccountId, DispatchError>;
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/// Number of eras that staked funds must remain bonded for.
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fn bonding_duration() -> EraIndex;
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/// The current era index.
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///
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/// This should be the latest planned era that the staking system knows about.
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fn current_era() -> EraIndex;
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/// Returns the [`Stake`] of `who`.
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fn stake(who: &Self::AccountId) -> Result<Stake<Self::Balance>, DispatchError>;
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/// Total stake of a staker, `Err` if not a staker.
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fn total_stake(who: &Self::AccountId) -> Result<Self::Balance, DispatchError> {
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Self::stake(who).map(|s| s.total)
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}
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/// Total active portion of a staker's [`Stake`], `Err` if not a staker.
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fn active_stake(who: &Self::AccountId) -> Result<Self::Balance, DispatchError> {
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Self::stake(who).map(|s| s.active)
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}
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/// Returns whether a staker is unbonding, `Err` if not a staker at all.
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fn is_unbonding(who: &Self::AccountId) -> Result<bool, DispatchError> {
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Self::stake(who).map(|s| s.active != s.total)
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}
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/// Returns whether a staker is FULLY unbonding, `Err` if not a staker at all.
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fn fully_unbond(who: &Self::AccountId) -> DispatchResult {
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Self::unbond(who, Self::stake(who)?.active)
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}
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/// Bond (lock) `value` of `who`'s balance, while forwarding any rewards to `payee`.
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fn bond(who: &Self::AccountId, value: Self::Balance, payee: &Self::AccountId)
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-> DispatchResult;
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/// Have `who` nominate `validators`.
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fn nominate(who: &Self::AccountId, validators: Vec<Self::AccountId>) -> DispatchResult;
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/// Chill `who`.
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fn chill(who: &Self::AccountId) -> DispatchResult;
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/// Bond some extra amount in `who`'s free balance against the active bonded balance of
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/// the account. The amount extra actually bonded will never be more than `who`'s free
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/// balance.
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fn bond_extra(who: &Self::AccountId, extra: Self::Balance) -> DispatchResult;
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/// Schedule a portion of the active bonded balance to be unlocked at era
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/// [Self::current_era] + [`Self::bonding_duration`].
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///
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/// Once the unlock era has been reached, [`Self::withdraw_unbonded`] can be called to unlock
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/// the funds.
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///
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/// The amount of times this can be successfully called is limited based on how many distinct
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/// eras funds are schedule to unlock in. Calling [`Self::withdraw_unbonded`] after some unlock
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/// schedules have reached their unlocking era should allow more calls to this function.
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fn unbond(stash: &Self::AccountId, value: Self::Balance) -> DispatchResult;
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/// Set the reward destination for the ledger associated with the stash.
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fn set_payee(stash: &Self::AccountId, reward_acc: &Self::AccountId) -> DispatchResult;
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/// Unlock any funds schedule to unlock before or at the current era.
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///
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/// Returns whether the stash was killed because of this withdraw or not.
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fn withdraw_unbonded(
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stash: Self::AccountId,
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num_slashing_spans: u32,
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) -> Result<bool, DispatchError>;
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/// The ideal number of active validators.
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fn desired_validator_count() -> u32;
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/// Whether or not there is an ongoing election.
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fn election_ongoing() -> bool;
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/// Force a current staker to become completely unstaked, immediately.
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fn force_unstake(who: Self::AccountId) -> DispatchResult;
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/// Checks whether an account `staker` has been exposed in an era.
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fn is_exposed_in_era(who: &Self::AccountId, era: &EraIndex) -> bool;
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/// Return the status of the given staker, `Err` if not staked at all.
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fn status(who: &Self::AccountId) -> Result<StakerStatus<Self::AccountId>, DispatchError>;
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/// Checks whether or not this is a validator account.
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fn is_validator(who: &Self::AccountId) -> bool {
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Self::status(who).map(|s| matches!(s, StakerStatus::Validator)).unwrap_or(false)
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}
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/// Checks whether the staker is a virtual account.
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///
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/// A virtual staker is an account whose locks are not managed by the [`StakingInterface`]
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/// implementation but by an external pezpallet. See [`StakingUnchecked::virtual_bond`] for more
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/// details.
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fn is_virtual_staker(who: &Self::AccountId) -> bool;
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/// Get the nominations of a stash, if they are a nominator, `None` otherwise.
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fn nominations(who: &Self::AccountId) -> Option<Vec<Self::AccountId>> {
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match Self::status(who) {
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Ok(StakerStatus::Nominator(t)) => Some(t),
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_ => None,
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}
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}
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/// Returns the fraction of the slash to be rewarded to reporter.
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fn slash_reward_fraction() -> Perbill;
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#[cfg(feature = "runtime-benchmarks")]
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fn max_exposure_page_size() -> Page;
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#[cfg(feature = "runtime-benchmarks")]
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fn add_era_stakers(
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current_era: &EraIndex,
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stash: &Self::AccountId,
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exposures: Vec<(Self::AccountId, Self::Balance)>,
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);
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#[cfg(feature = "runtime-benchmarks")]
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fn set_current_era(era: EraIndex);
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}
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/// Set of low level apis to manipulate staking ledger.
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///
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/// These apis bypass some or all safety checks and should only be used if you know what you are
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/// doing.
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pub trait StakingUnchecked: StakingInterface {
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/// Migrate an existing staker to a virtual staker.
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///
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/// It would release all funds held by the implementation pezpallet.
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fn migrate_to_virtual_staker(who: &Self::AccountId) -> DispatchResult;
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/// Book-keep a new bond for `keyless_who` without applying any locks (hence virtual).
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///
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/// It is important that `keyless_who` is a keyless account and therefore cannot interact with
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/// staking pezpallet directly. Caller is responsible for ensuring the passed amount is locked
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/// and valid.
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fn virtual_bond(
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keyless_who: &Self::AccountId,
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value: Self::Balance,
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payee: &Self::AccountId,
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) -> DispatchResult;
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/// Migrate a virtual staker to a direct staker.
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///
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/// Only used for testing.
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#[cfg(feature = "runtime-benchmarks")]
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fn migrate_to_direct_staker(who: &Self::AccountId);
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}
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/// The amount of exposure for an era that an individual nominator has (susceptible to slashing).
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#[derive(
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PartialEq,
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Eq,
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PartialOrd,
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Ord,
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Clone,
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Encode,
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Decode,
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DecodeWithMemTracking,
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RuntimeDebug,
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TypeInfo,
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Copy,
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)]
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pub struct IndividualExposure<AccountId, Balance: HasCompact> {
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/// The stash account of the nominator in question.
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pub who: AccountId,
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/// Amount of funds exposed.
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#[codec(compact)]
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pub value: Balance,
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}
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/// A snapshot of the stake backing a single validator in the system.
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#[derive(
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PartialEq,
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Eq,
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PartialOrd,
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Ord,
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Clone,
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Encode,
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Decode,
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DecodeWithMemTracking,
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RuntimeDebug,
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TypeInfo,
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)]
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pub struct Exposure<AccountId, Balance: HasCompact> {
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/// The total balance backing this validator.
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#[codec(compact)]
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pub total: Balance,
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/// The validator's own stash that is exposed.
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#[codec(compact)]
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pub own: Balance,
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/// The portions of nominators stashes that are exposed.
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pub others: Vec<IndividualExposure<AccountId, Balance>>,
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}
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impl<AccountId, Balance: Default + HasCompact> Default for Exposure<AccountId, Balance> {
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fn default() -> Self {
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Self { total: Default::default(), own: Default::default(), others: vec![] }
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}
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}
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impl<
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AccountId: Clone,
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Balance: HasCompact + AtLeast32BitUnsigned + Copy + codec::MaxEncodedLen,
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> Exposure<AccountId, Balance>
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{
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/// Splits self into two instances of exposures.
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///
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/// `n_others` individual exposures are consumed from self and returned as part of the new
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/// exposure.
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///
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/// Since this method splits `others` of a single exposure, `total.own` will be the same for
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/// both `self` and the returned exposure.
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pub fn split_others(&mut self, n_others: u32) -> Self {
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let head_others: Vec<_> =
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self.others.drain(..(n_others as usize).min(self.others.len())).collect();
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let total_others_head: Balance = head_others
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.iter()
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.fold(Zero::zero(), |acc: Balance, o| acc.saturating_add(o.value));
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self.total = self.total.saturating_sub(total_others_head);
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Self {
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total: total_others_head.saturating_add(self.own),
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own: self.own,
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others: head_others,
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}
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}
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/// Converts an `Exposure` into `PagedExposureMetadata` and multiple chunks of
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/// `IndividualExposure` with each chunk having maximum of `page_size` elements.
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pub fn into_pages(
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self,
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page_size: Page,
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) -> (PagedExposureMetadata<Balance>, Vec<ExposurePage<AccountId, Balance>>) {
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let individual_chunks = self.others.chunks(page_size as usize);
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let mut exposure_pages: Vec<ExposurePage<AccountId, Balance>> =
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Vec::with_capacity(individual_chunks.len());
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for chunk in individual_chunks {
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let mut page_total: Balance = Zero::zero();
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let mut others: Vec<IndividualExposure<AccountId, Balance>> =
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Vec::with_capacity(chunk.len());
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for individual in chunk.iter() {
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page_total.saturating_accrue(individual.value);
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others.push(IndividualExposure {
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who: individual.who.clone(),
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value: individual.value,
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})
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}
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exposure_pages.push(ExposurePage { page_total, others });
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}
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(
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PagedExposureMetadata {
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total: self.total,
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own: self.own,
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nominator_count: self.others.len() as u32,
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page_count: exposure_pages.len() as Page,
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},
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exposure_pages,
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)
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}
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}
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/// A snapshot of the stake backing a single validator in the system.
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#[derive(PartialEq, Eq, PartialOrd, Ord, Clone, Encode, Decode, RuntimeDebug, TypeInfo)]
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pub struct ExposurePage<AccountId, Balance: HasCompact> {
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/// The total balance of this chunk/page.
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#[codec(compact)]
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pub page_total: Balance,
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/// The portions of nominators stashes that are exposed.
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pub others: Vec<IndividualExposure<AccountId, Balance>>,
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}
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impl<A, B: Default + HasCompact> Default for ExposurePage<A, B> {
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fn default() -> Self {
|
|
ExposurePage { page_total: Default::default(), others: vec![] }
|
|
}
|
|
}
|
|
|
|
/// Returns an exposure page from a set of individual exposures.
|
|
impl<A, B: HasCompact + Default + AddAssign + SubAssign + Clone> From<Vec<IndividualExposure<A, B>>>
|
|
for ExposurePage<A, B>
|
|
{
|
|
fn from(exposures: Vec<IndividualExposure<A, B>>) -> Self {
|
|
exposures.into_iter().fold(ExposurePage::default(), |mut page, e| {
|
|
page.page_total += e.value.clone();
|
|
page.others.push(e);
|
|
page
|
|
})
|
|
}
|
|
}
|
|
|
|
/// Metadata for Paged Exposure of a validator such as total stake across pages and page count.
|
|
///
|
|
/// In combination with the associated `ExposurePage`s, it can be used to reconstruct a full
|
|
/// `Exposure` set of a validator. This is useful for cases where we want to query full set of
|
|
/// `Exposure` as one page (for backward compatibility).
|
|
#[derive(
|
|
PartialEq,
|
|
Eq,
|
|
PartialOrd,
|
|
Ord,
|
|
Clone,
|
|
Encode,
|
|
Decode,
|
|
RuntimeDebug,
|
|
TypeInfo,
|
|
Default,
|
|
MaxEncodedLen,
|
|
Copy,
|
|
)]
|
|
pub struct PagedExposureMetadata<Balance: HasCompact + codec::MaxEncodedLen> {
|
|
/// The total balance backing this validator.
|
|
#[codec(compact)]
|
|
pub total: Balance,
|
|
/// The validator's own stash that is exposed.
|
|
#[codec(compact)]
|
|
pub own: Balance,
|
|
/// Number of nominators backing this validator.
|
|
pub nominator_count: u32,
|
|
/// Number of pages of nominators.
|
|
pub page_count: Page,
|
|
}
|
|
|
|
impl<Balance> PagedExposureMetadata<Balance>
|
|
where
|
|
Balance: HasCompact
|
|
+ codec::MaxEncodedLen
|
|
+ Add<Output = Balance>
|
|
+ Sub<Output = Balance>
|
|
+ pezsp_runtime::Saturating
|
|
+ PartialEq
|
|
+ Copy
|
|
+ pezsp_runtime::traits::Debug,
|
|
{
|
|
/// Consumes self and returns the result of the metadata updated with `other_balances` and
|
|
/// of adding `other_num` nominators to the metadata.
|
|
///
|
|
/// `Max` is a getter of the maximum number of nominators per page.
|
|
pub fn update_with<Max: pezsp_core::Get<u32>>(
|
|
self,
|
|
others_balance: Balance,
|
|
others_num: u32,
|
|
) -> Self {
|
|
let page_limit = Max::get().max(1);
|
|
let new_nominator_count = self.nominator_count.saturating_add(others_num);
|
|
let new_page_count = new_nominator_count
|
|
.saturating_add(page_limit)
|
|
.saturating_sub(1)
|
|
.saturating_div(page_limit);
|
|
|
|
Self {
|
|
total: self.total.saturating_add(others_balance),
|
|
own: self.own,
|
|
nominator_count: new_nominator_count,
|
|
page_count: new_page_count,
|
|
}
|
|
}
|
|
}
|
|
|
|
/// A type that belongs only in the context of an `Agent`.
|
|
///
|
|
/// `Agent` is someone that manages delegated funds from [`Delegator`] accounts. It can
|
|
/// then use these funds to participate in the staking system. It can never use its own funds to
|
|
/// stake. They instead (virtually bond)[`StakingUnchecked::virtual_bond`] into the staking system
|
|
/// and are also called `Virtual Stakers`.
|
|
///
|
|
/// The `Agent` is also responsible for managing rewards and slashing for all the `Delegators` that
|
|
/// have delegated funds to it.
|
|
#[derive(Clone, Debug)]
|
|
pub struct Agent<T>(T);
|
|
impl<T> From<T> for Agent<T> {
|
|
fn from(acc: T) -> Self {
|
|
Agent(acc)
|
|
}
|
|
}
|
|
|
|
impl<T> Agent<T> {
|
|
pub fn get(self) -> T {
|
|
self.0
|
|
}
|
|
}
|
|
|
|
/// A type that belongs only in the context of a `Delegator`.
|
|
///
|
|
/// `Delegator` is someone that delegates funds to an `Agent`, allowing them to pool funds
|
|
/// along with other delegators and participate in the staking system.
|
|
#[derive(Clone, Debug)]
|
|
pub struct Delegator<T>(T);
|
|
impl<T> From<T> for Delegator<T> {
|
|
fn from(acc: T) -> Self {
|
|
Delegator(acc)
|
|
}
|
|
}
|
|
|
|
impl<T> Delegator<T> {
|
|
pub fn get(self) -> T {
|
|
self.0
|
|
}
|
|
}
|
|
|
|
/// Trait to provide delegation functionality for stakers.
|
|
pub trait DelegationInterface {
|
|
/// Balance type used by the staking system.
|
|
type Balance: Sub<Output = Self::Balance>
|
|
+ Ord
|
|
+ PartialEq
|
|
+ Default
|
|
+ Copy
|
|
+ MaxEncodedLen
|
|
+ FullCodec
|
|
+ TypeInfo
|
|
+ Saturating;
|
|
|
|
/// AccountId type used by the staking system.
|
|
type AccountId: Clone + core::fmt::Debug;
|
|
|
|
/// Returns effective balance of the `Agent` account. `None` if not an `Agent`.
|
|
///
|
|
/// This takes into account any pending slashes to `Agent` against the delegated balance.
|
|
fn agent_balance(agent: Agent<Self::AccountId>) -> Option<Self::Balance>;
|
|
|
|
/// Returns the total amount of funds that is unbonded and can be withdrawn from the `Agent`
|
|
/// account. `None` if not an `Agent`.
|
|
fn agent_transferable_balance(agent: Agent<Self::AccountId>) -> Option<Self::Balance>;
|
|
|
|
/// Returns the total amount of funds delegated. `None` if not a `Delegator`.
|
|
fn delegator_balance(delegator: Delegator<Self::AccountId>) -> Option<Self::Balance>;
|
|
|
|
/// Register `Agent` such that it can accept delegation.
|
|
fn register_agent(
|
|
agent: Agent<Self::AccountId>,
|
|
reward_account: &Self::AccountId,
|
|
) -> DispatchResult;
|
|
|
|
/// Removes `Agent` registration.
|
|
///
|
|
/// This should only be allowed if the agent has no staked funds.
|
|
fn remove_agent(agent: Agent<Self::AccountId>) -> DispatchResult;
|
|
|
|
/// Add delegation to the `Agent`.
|
|
fn delegate(
|
|
delegator: Delegator<Self::AccountId>,
|
|
agent: Agent<Self::AccountId>,
|
|
amount: Self::Balance,
|
|
) -> DispatchResult;
|
|
|
|
/// Withdraw or revoke delegation to `Agent`.
|
|
///
|
|
/// If there are `Agent` funds upto `amount` available to withdraw, then those funds would
|
|
/// be released to the `delegator`
|
|
fn withdraw_delegation(
|
|
delegator: Delegator<Self::AccountId>,
|
|
agent: Agent<Self::AccountId>,
|
|
amount: Self::Balance,
|
|
num_slashing_spans: u32,
|
|
) -> DispatchResult;
|
|
|
|
/// Returns pending slashes posted to the `Agent` account. None if not an `Agent`.
|
|
///
|
|
/// Slashes to `Agent` account are not immediate and are applied lazily. Since `Agent`
|
|
/// has an unbounded number of delegators, immediate slashing is not possible.
|
|
fn pending_slash(agent: Agent<Self::AccountId>) -> Option<Self::Balance>;
|
|
|
|
/// Apply a pending slash to an `Agent` by slashing `value` from `delegator`.
|
|
///
|
|
/// A reporter may be provided (if one exists) in order for the implementor to reward them,
|
|
/// if applicable.
|
|
fn delegator_slash(
|
|
agent: Agent<Self::AccountId>,
|
|
delegator: Delegator<Self::AccountId>,
|
|
value: Self::Balance,
|
|
maybe_reporter: Option<Self::AccountId>,
|
|
) -> DispatchResult;
|
|
}
|
|
|
|
/// Trait to provide functionality for direct stakers to migrate to delegation agents.
|
|
/// See [`DelegationInterface`] for more details on delegation.
|
|
pub trait DelegationMigrator {
|
|
/// Balance type used by the staking system.
|
|
type Balance: Sub<Output = Self::Balance>
|
|
+ Ord
|
|
+ PartialEq
|
|
+ Default
|
|
+ Copy
|
|
+ MaxEncodedLen
|
|
+ FullCodec
|
|
+ TypeInfo
|
|
+ Saturating;
|
|
|
|
/// AccountId type used by the staking system.
|
|
type AccountId: Clone + core::fmt::Debug;
|
|
|
|
/// Migrate an existing `Nominator` to `Agent` account.
|
|
///
|
|
/// The implementation should ensure the `Nominator` account funds are moved to an escrow
|
|
/// from which `Agents` can later release funds to its `Delegators`.
|
|
fn migrate_nominator_to_agent(
|
|
agent: Agent<Self::AccountId>,
|
|
reward_account: &Self::AccountId,
|
|
) -> DispatchResult;
|
|
|
|
/// Migrate `value` of delegation to `delegator` from a migrating agent.
|
|
///
|
|
/// When a direct `Nominator` migrates to `Agent`, the funds are kept in escrow. This function
|
|
/// allows the `Agent` to release the funds to the `delegator`.
|
|
fn migrate_delegation(
|
|
agent: Agent<Self::AccountId>,
|
|
delegator: Delegator<Self::AccountId>,
|
|
value: Self::Balance,
|
|
) -> DispatchResult;
|
|
|
|
/// Drop the `Agent` account and its associated delegators.
|
|
///
|
|
/// Also removed from [`StakingUnchecked`] as a Virtual Staker. Useful for testing.
|
|
#[cfg(feature = "runtime-benchmarks")]
|
|
fn force_kill_agent(agent: Agent<Self::AccountId>);
|
|
}
|
|
|
|
pezsp_core::generate_feature_enabled_macro!(runtime_benchmarks_enabled, feature = "runtime-benchmarks", $);
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use pezsp_core::ConstU32;
|
|
|
|
use super::*;
|
|
|
|
#[test]
|
|
fn update_with_works() {
|
|
let metadata = PagedExposureMetadata::<u32> {
|
|
total: 1000,
|
|
own: 0, // don't care
|
|
nominator_count: 10,
|
|
page_count: 1,
|
|
};
|
|
|
|
assert_eq!(
|
|
metadata.update_with::<ConstU32<10>>(1, 1),
|
|
PagedExposureMetadata { total: 1001, own: 0, nominator_count: 11, page_count: 2 },
|
|
);
|
|
|
|
assert_eq!(
|
|
metadata.update_with::<ConstU32<5>>(1, 1),
|
|
PagedExposureMetadata { total: 1001, own: 0, nominator_count: 11, page_count: 3 },
|
|
);
|
|
|
|
assert_eq!(
|
|
metadata.update_with::<ConstU32<4>>(1, 1),
|
|
PagedExposureMetadata { total: 1001, own: 0, nominator_count: 11, page_count: 3 },
|
|
);
|
|
|
|
assert_eq!(
|
|
metadata.update_with::<ConstU32<1>>(1, 1),
|
|
PagedExposureMetadata { total: 1001, own: 0, nominator_count: 11, page_count: 11 },
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn individual_exposures_to_exposure_works() {
|
|
let exposure_1 = IndividualExposure { who: 1, value: 10u32 };
|
|
let exposure_2 = IndividualExposure { who: 2, value: 20 };
|
|
let exposure_3 = IndividualExposure { who: 3, value: 30 };
|
|
|
|
let exposure_page: ExposurePage<u32, u32> = vec![exposure_1, exposure_2, exposure_3].into();
|
|
|
|
assert_eq!(
|
|
exposure_page,
|
|
ExposurePage { page_total: 60, others: vec![exposure_1, exposure_2, exposure_3] },
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn empty_individual_exposures_to_exposure_works() {
|
|
let empty_exposures: Vec<IndividualExposure<u32, u32>> = vec![];
|
|
|
|
let exposure_page: ExposurePage<u32, u32> = empty_exposures.into();
|
|
assert_eq!(exposure_page, ExposurePage { page_total: 0, others: vec![] });
|
|
}
|
|
|
|
#[test]
|
|
fn exposure_split_others_works() {
|
|
let exposure = Exposure {
|
|
total: 100,
|
|
own: 20,
|
|
others: vec![
|
|
IndividualExposure { who: 1, value: 20u32 },
|
|
IndividualExposure { who: 2, value: 20 },
|
|
IndividualExposure { who: 3, value: 20 },
|
|
IndividualExposure { who: 4, value: 20 },
|
|
],
|
|
};
|
|
|
|
let mut exposure_0 = exposure.clone();
|
|
// split others with with 0 `n_others` is a noop and returns an empty exposure (with `own`
|
|
// only).
|
|
let split_exposure = exposure_0.split_others(0);
|
|
assert_eq!(exposure_0, exposure);
|
|
assert_eq!(split_exposure, Exposure { total: 20, own: 20, others: vec![] });
|
|
|
|
let mut exposure_1 = exposure.clone();
|
|
// split individual exposures so that the returned exposure has 1 individual exposure.
|
|
let split_exposure = exposure_1.split_others(1);
|
|
assert_eq!(exposure_1.own, 20);
|
|
assert_eq!(exposure_1.total, 20 + 3 * 20);
|
|
assert_eq!(exposure_1.others.len(), 3);
|
|
|
|
assert_eq!(split_exposure.own, 20);
|
|
assert_eq!(split_exposure.total, 20 + 1 * 20);
|
|
assert_eq!(split_exposure.others.len(), 1);
|
|
|
|
let mut exposure_3 = exposure.clone();
|
|
// split individual exposures so that the returned exposure has 3 individual exposures,
|
|
// which are consumed from the original exposure.
|
|
let split_exposure = exposure_3.split_others(3);
|
|
assert_eq!(exposure_3.own, 20);
|
|
assert_eq!(exposure_3.total, 20 + 1 * 20);
|
|
assert_eq!(exposure_3.others.len(), 1);
|
|
|
|
assert_eq!(split_exposure.own, 20);
|
|
assert_eq!(split_exposure.total, 20 + 3 * 20);
|
|
assert_eq!(split_exposure.others.len(), 3);
|
|
|
|
let mut exposure_max = exposure.clone();
|
|
// split others with with more `n_others` than the number of others in the exposure
|
|
// consumes all the individual exposures of the original Exposure and returns them in the
|
|
// new exposure.
|
|
let split_exposure = exposure_max.split_others(u32::MAX);
|
|
assert_eq!(split_exposure, exposure);
|
|
assert_eq!(exposure_max, Exposure { total: 20, own: 20, others: vec![] });
|
|
}
|
|
}
|