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afa5861f3b
* Squash and rebase from gav-lazy-reaping * Bump version * Bump runtime again * Docs. * Remove old functions * Update frame/balances/src/lib.rs Co-Authored-By: Shawn Tabrizi <shawntabrizi@gmail.com> * Update frame/contracts/src/lib.rs Co-Authored-By: Shawn Tabrizi <shawntabrizi@gmail.com> * Warnings * Bump runtime version * Update frame/democracy/src/lib.rs Co-Authored-By: Shawn Tabrizi <shawntabrizi@gmail.com> * Update frame/system/src/lib.rs * Clean up OnReapAccount * Use frame_support debug * Bump spec * Renames and fix * Fix * Fix rename * Fix * Increase time for test Co-authored-by: Shawn Tabrizi <shawntabrizi@gmail.com> Co-authored-by: Benjamin Kampmann <ben.kampmann@googlemail.com>
1042 lines
35 KiB
Rust
1042 lines
35 KiB
Rust
// Copyright 2017-2020 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Substrate is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Substrate. If not, see <http://www.gnu.org/licenses/>.
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//! # Session Module
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//!
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//! The Session module allows validators to manage their session keys, provides a function for changing
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//! the session length, and handles session rotation.
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//!
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//! - [`session::Trait`](./trait.Trait.html)
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//! - [`Call`](./enum.Call.html)
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//! - [`Module`](./struct.Module.html)
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//!
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//! ## Overview
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//!
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//! ### Terminology
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//! <!-- Original author of paragraph: @gavofyork -->
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//!
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//! - **Session:** A session is a period of time that has a constant set of validators. Validators can only join
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//! or exit the validator set at a session change. It is measured in block numbers. The block where a session is
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//! ended is determined by the `ShouldEndSession` trait. When the session is ending, a new validator set
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//! can be chosen by `OnSessionEnding` implementations.
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//! - **Session key:** A session key is actually several keys kept together that provide the various signing
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//! functions required by network authorities/validators in pursuit of their duties.
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//! - **Validator ID:** Every account has an associated validator ID. For some simple staking systems, this
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//! may just be the same as the account ID. For staking systems using a stash/controller model,
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//! the validator ID would be the stash account ID of the controller.
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//! - **Session key configuration process:** Session keys are set using `set_keys` for use not in
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//! the next session, but the session after next. They are stored in `NextKeys`, a mapping between
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//! the caller's `ValidatorId` and the session keys provided. `set_keys` allows users to set their
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//! session key prior to being selected as validator.
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//! It is a public call since it uses `ensure_signed`, which checks that the origin is a signed account.
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//! As such, the account ID of the origin stored in `NextKeys` may not necessarily be associated with
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//! a block author or a validator. The session keys of accounts are removed once their account balance is zero.
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//! - **Session length:** This pallet does not assume anything about the length of each session.
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//! Rather, it relies on an implementation of `ShouldEndSession` to dictate a new session's start.
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//! This pallet provides the `PeriodicSessions` struct for simple periodic sessions.
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//! - **Session rotation configuration:** Configure as either a 'normal' (rewardable session where rewards are
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//! applied) or 'exceptional' (slashable) session rotation.
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//! - **Session rotation process:** At the beginning of each block, the `on_initialize` function
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//! queries the provided implementation of `ShouldEndSession`. If the session is to end the newly
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//! activated validator IDs and session keys are taken from storage and passed to the
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//! `SessionHandler`. The validator set supplied by `SessionManager::new_session` and the corresponding session
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//! keys, which may have been registered via `set_keys` during the previous session, are written
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//! to storage where they will wait one session before being passed to the `SessionHandler`
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//! themselves.
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//!
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//! ### Goals
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//!
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//! The Session pallet is designed to make the following possible:
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//!
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//! - Set session keys of the validator set for upcoming sessions.
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//! - Control the length of sessions.
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//! - Configure and switch between either normal or exceptional session rotations.
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//!
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//! ## Interface
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//!
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//! ### Dispatchable Functions
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//!
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//! - `set_keys` - Set a validator's session keys for upcoming sessions.
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//!
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//! ### Public Functions
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//!
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//! - `rotate_session` - Change to the next session. Register the new authority set. Queue changes
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//! for next session rotation.
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//! - `disable_index` - Disable a validator by index.
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//! - `disable` - Disable a validator by Validator ID
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//!
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//! ## Usage
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//!
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//! ### Example from the FRAME
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//!
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//! The [Staking pallet](../pallet_staking/index.html) uses the Session pallet to get the validator set.
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//!
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//! ```
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//! use pallet_session as session;
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//!
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//! fn validators<T: pallet_session::Trait>() -> Vec<<T as pallet_session::Trait>::ValidatorId> {
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//! <pallet_session::Module<T>>::validators()
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//! }
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//! # fn main(){}
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//! ```
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//!
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//! ## Related Modules
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//!
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//! - [Staking](../pallet_staking/index.html)
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#![cfg_attr(not(feature = "std"), no_std)]
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use sp_std::{prelude::*, marker::PhantomData, ops::{Sub, Rem}};
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use codec::Decode;
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use sp_runtime::{KeyTypeId, Perbill, RuntimeAppPublic, BoundToRuntimeAppPublic};
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use frame_support::weights::SimpleDispatchInfo;
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use sp_runtime::traits::{Convert, Zero, Member, OpaqueKeys};
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use sp_staking::SessionIndex;
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use frame_support::{ensure, decl_module, decl_event, decl_storage, decl_error, ConsensusEngineId};
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use frame_support::{traits::{Get, FindAuthor, ValidatorRegistration}, Parameter};
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use frame_support::dispatch::{self, DispatchResult, DispatchError};
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use frame_system::{self as system, ensure_signed};
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#[cfg(test)]
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mod mock;
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#[cfg(feature = "historical")]
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pub mod historical;
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/// Decides whether the session should be ended.
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pub trait ShouldEndSession<BlockNumber> {
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/// Return `true` if the session should be ended.
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fn should_end_session(now: BlockNumber) -> bool;
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}
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/// Ends the session after a fixed period of blocks.
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///
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/// The first session will have length of `Offset`, and
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/// the following sessions will have length of `Period`.
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/// This may prove nonsensical if `Offset` >= `Period`.
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pub struct PeriodicSessions<
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Period,
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Offset,
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>(PhantomData<(Period, Offset)>);
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impl<
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BlockNumber: Rem<Output=BlockNumber> + Sub<Output=BlockNumber> + Zero + PartialOrd,
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Period: Get<BlockNumber>,
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Offset: Get<BlockNumber>,
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> ShouldEndSession<BlockNumber> for PeriodicSessions<Period, Offset> {
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fn should_end_session(now: BlockNumber) -> bool {
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let offset = Offset::get();
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now >= offset && ((now - offset) % Period::get()).is_zero()
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}
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}
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/// A trait for managing creation of new validator set.
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pub trait SessionManager<ValidatorId> {
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/// Plan a new session, and optionally provide the new validator set.
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///
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/// Even if the validator-set is the same as before, if any underlying economic
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/// conditions have changed (i.e. stake-weights), the new validator set must be returned.
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/// This is necessary for consensus engines making use of the session module to
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/// issue a validator-set change so misbehavior can be provably associated with the new
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/// economic conditions as opposed to the old.
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/// The returned validator set, if any, will not be applied until `new_index`.
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/// `new_index` is strictly greater than from previous call.
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///
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/// The first session start at index 0.
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fn new_session(new_index: SessionIndex) -> Option<Vec<ValidatorId>>;
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/// End the session.
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///
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/// Because the session pallet can queue validator set the ending session can be lower than the
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/// last new session index.
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fn end_session(end_index: SessionIndex);
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}
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impl<A> SessionManager<A> for () {
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fn new_session(_: SessionIndex) -> Option<Vec<A>> { None }
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fn end_session(_: SessionIndex) {}
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}
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/// Handler for session life cycle events.
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pub trait SessionHandler<ValidatorId> {
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/// All the key type ids this session handler can process.
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///
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/// The order must be the same as it expects them in
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/// [`on_new_session`](Self::on_new_session) and [`on_genesis_session`](Self::on_genesis_session).
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const KEY_TYPE_IDS: &'static [KeyTypeId];
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/// The given validator set will be used for the genesis session.
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/// It is guaranteed that the given validator set will also be used
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/// for the second session, therefore the first call to `on_new_session`
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/// should provide the same validator set.
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fn on_genesis_session<Ks: OpaqueKeys>(validators: &[(ValidatorId, Ks)]);
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/// Session set has changed; act appropriately. Note that this can be called
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/// before initialization of your module.
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///
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/// `changed` is true whenever any of the session keys or underlying economic
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/// identities or weightings behind those keys has changed.
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fn on_new_session<Ks: OpaqueKeys>(
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changed: bool,
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validators: &[(ValidatorId, Ks)],
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queued_validators: &[(ValidatorId, Ks)],
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);
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/// A notification for end of the session.
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///
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/// Note it is triggered before any `SessionManager::end_session` handlers,
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/// so we can still affect the validator set.
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fn on_before_session_ending() {}
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/// A validator got disabled. Act accordingly until a new session begins.
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fn on_disabled(validator_index: usize);
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}
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/// A session handler for specific key type.
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pub trait OneSessionHandler<ValidatorId>: BoundToRuntimeAppPublic {
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/// The key type expected.
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type Key: Decode + Default + RuntimeAppPublic;
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fn on_genesis_session<'a, I: 'a>(validators: I)
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where I: Iterator<Item=(&'a ValidatorId, Self::Key)>, ValidatorId: 'a;
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/// Session set has changed; act appropriately. Note that this can be called
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/// before initialization of your module.
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///
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/// `changed` is true when at least one of the session keys
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/// or the underlying economic identities/distribution behind one the
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/// session keys has changed, false otherwise.
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///
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/// The `validators` are the validators of the incoming session, and `queued_validators`
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/// will follow.
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fn on_new_session<'a, I: 'a>(
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changed: bool,
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validators: I,
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queued_validators: I,
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) where I: Iterator<Item=(&'a ValidatorId, Self::Key)>, ValidatorId: 'a;
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/// A notification for end of the session.
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///
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/// Note it is triggered before any `SessionManager::end_session` handlers,
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/// so we can still affect the validator set.
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fn on_before_session_ending() {}
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/// A validator got disabled. Act accordingly until a new session begins.
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fn on_disabled(_validator_index: usize);
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}
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#[impl_trait_for_tuples::impl_for_tuples(1, 30)]
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#[tuple_types_no_default_trait_bound]
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impl<AId> SessionHandler<AId> for Tuple {
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for_tuples!( where #( Tuple: OneSessionHandler<AId> )* );
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for_tuples!(
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const KEY_TYPE_IDS: &'static [KeyTypeId] = &[ #( <Tuple::Key as RuntimeAppPublic>::ID ),* ];
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);
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fn on_genesis_session<Ks: OpaqueKeys>(validators: &[(AId, Ks)]) {
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for_tuples!(
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#(
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let our_keys: Box<dyn Iterator<Item=_>> = Box::new(validators.iter()
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.map(|k| (&k.0, k.1.get::<Tuple::Key>(<Tuple::Key as RuntimeAppPublic>::ID)
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.unwrap_or_default())));
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Tuple::on_genesis_session(our_keys);
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)*
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)
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}
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fn on_new_session<Ks: OpaqueKeys>(
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changed: bool,
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validators: &[(AId, Ks)],
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queued_validators: &[(AId, Ks)],
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) {
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for_tuples!(
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#(
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let our_keys: Box<dyn Iterator<Item=_>> = Box::new(validators.iter()
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.map(|k| (&k.0, k.1.get::<Tuple::Key>(<Tuple::Key as RuntimeAppPublic>::ID)
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.unwrap_or_default())));
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let queued_keys: Box<dyn Iterator<Item=_>> = Box::new(queued_validators.iter()
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.map(|k| (&k.0, k.1.get::<Tuple::Key>(<Tuple::Key as RuntimeAppPublic>::ID)
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.unwrap_or_default())));
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Tuple::on_new_session(changed, our_keys, queued_keys);
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)*
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)
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}
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fn on_before_session_ending() {
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for_tuples!( #( Tuple::on_before_session_ending(); )* )
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}
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fn on_disabled(i: usize) {
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for_tuples!( #( Tuple::on_disabled(i); )* )
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}
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}
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/// `SessionHandler` for tests that use `UintAuthorityId` as `Keys`.
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pub struct TestSessionHandler;
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impl<AId> SessionHandler<AId> for TestSessionHandler {
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const KEY_TYPE_IDS: &'static [KeyTypeId] = &[sp_runtime::key_types::DUMMY];
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fn on_genesis_session<Ks: OpaqueKeys>(_: &[(AId, Ks)]) {}
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fn on_new_session<Ks: OpaqueKeys>(_: bool, _: &[(AId, Ks)], _: &[(AId, Ks)]) {}
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fn on_before_session_ending() {}
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fn on_disabled(_: usize) {}
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}
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impl<T: Trait> ValidatorRegistration<T::ValidatorId> for Module<T> {
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fn is_registered(id: &T::ValidatorId) -> bool {
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Self::load_keys(id).is_some()
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}
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}
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pub trait Trait: frame_system::Trait {
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/// The overarching event type.
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type Event: From<Event> + Into<<Self as frame_system::Trait>::Event>;
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/// A stable ID for a validator.
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type ValidatorId: Member + Parameter;
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/// A conversion from account ID to validator ID.
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type ValidatorIdOf: Convert<Self::AccountId, Option<Self::ValidatorId>>;
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/// Indicator for when to end the session.
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type ShouldEndSession: ShouldEndSession<Self::BlockNumber>;
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/// Handler for managing new session.
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type SessionManager: SessionManager<Self::ValidatorId>;
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/// Handler when a session has changed.
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type SessionHandler: SessionHandler<Self::ValidatorId>;
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/// The keys.
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type Keys: OpaqueKeys + Member + Parameter + Default;
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/// The fraction of validators set that is safe to be disabled.
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///
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/// After the threshold is reached `disabled` method starts to return true,
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/// which in combination with `pallet_staking` forces a new era.
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type DisabledValidatorsThreshold: Get<Perbill>;
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}
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const DEDUP_KEY_PREFIX: &[u8] = b":session:keys";
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decl_storage! {
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trait Store for Module<T: Trait> as Session {
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/// The current set of validators.
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Validators get(fn validators): Vec<T::ValidatorId>;
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/// Current index of the session.
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CurrentIndex get(fn current_index): SessionIndex;
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/// True if the underlying economic identities or weighting behind the validators
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/// has changed in the queued validator set.
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QueuedChanged: bool;
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/// The queued keys for the next session. When the next session begins, these keys
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/// will be used to determine the validator's session keys.
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QueuedKeys get(fn queued_keys): Vec<(T::ValidatorId, T::Keys)>;
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/// Indices of disabled validators.
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///
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/// The set is cleared when `on_session_ending` returns a new set of identities.
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DisabledValidators get(fn disabled_validators): Vec<u32>;
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/// The next session keys for a validator.
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///
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/// The first key is always `DEDUP_KEY_PREFIX` to have all the data in the same branch of
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/// the trie. Having all data in the same branch should prevent slowing down other queries.
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// TODO: Migrate to a normal map now https://github.com/paritytech/substrate/issues/4917
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NextKeys: double_map hasher(twox_64_concat) Vec<u8>, hasher(blake2_256) T::ValidatorId
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=> Option<T::Keys>;
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/// The owner of a key. The second key is the `KeyTypeId` + the encoded key.
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///
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/// The first key is always `DEDUP_KEY_PREFIX` to have all the data in the same branch of
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/// the trie. Having all data in the same branch should prevent slowing down other queries.
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// TODO: Migrate to a normal map now https://github.com/paritytech/substrate/issues/4917
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KeyOwner: double_map hasher(twox_64_concat) Vec<u8>, hasher(blake2_256) (KeyTypeId, Vec<u8>)
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=> Option<T::ValidatorId>;
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}
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add_extra_genesis {
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config(keys): Vec<(T::AccountId, T::ValidatorId, T::Keys)>;
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build(|config: &GenesisConfig<T>| {
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if T::SessionHandler::KEY_TYPE_IDS.len() != T::Keys::key_ids().len() {
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panic!("Number of keys in session handler and session keys does not match");
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}
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T::SessionHandler::KEY_TYPE_IDS.iter().zip(T::Keys::key_ids()).enumerate()
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.for_each(|(i, (sk, kk))| {
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if sk != kk {
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panic!(
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"Session handler and session key expect different key type at index: {}",
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i,
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);
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}
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});
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for (account, val, keys) in config.keys.iter().cloned() {
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<Module<T>>::inner_set_keys(&val, keys)
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.expect("genesis config must not contain duplicates; qed");
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system::Module::<T>::inc_ref(&account);
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}
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let initial_validators_0 = T::SessionManager::new_session(0)
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.unwrap_or_else(|| {
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frame_support::print("No initial validator provided by `SessionManager`, use \
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session config keys to generate initial validator set.");
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config.keys.iter().map(|x| x.1.clone()).collect()
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});
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assert!(!initial_validators_0.is_empty(), "Empty validator set for session 0 in genesis block!");
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let initial_validators_1 = T::SessionManager::new_session(1)
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.unwrap_or_else(|| initial_validators_0.clone());
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assert!(!initial_validators_1.is_empty(), "Empty validator set for session 1 in genesis block!");
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let queued_keys: Vec<_> = initial_validators_1
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.iter()
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.cloned()
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.map(|v| (
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v.clone(),
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<Module<T>>::load_keys(&v).unwrap_or_default(),
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))
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.collect();
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// Tell everyone about the genesis session keys
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T::SessionHandler::on_genesis_session::<T::Keys>(&queued_keys);
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<Validators<T>>::put(initial_validators_0);
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<QueuedKeys<T>>::put(queued_keys);
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});
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}
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}
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decl_event!(
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pub enum Event {
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/// New session has happened. Note that the argument is the session index, not the block
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/// number as the type might suggest.
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NewSession(SessionIndex),
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}
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);
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decl_error! {
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/// Error for the session module.
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pub enum Error for Module<T: Trait> {
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/// Invalid ownership proof.
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|
InvalidProof,
|
|
/// No associated validator ID for account.
|
|
NoAssociatedValidatorId,
|
|
/// Registered duplicate key.
|
|
DuplicatedKey,
|
|
/// No keys are associated with this account.
|
|
NoKeys,
|
|
}
|
|
}
|
|
|
|
decl_module! {
|
|
pub struct Module<T: Trait> for enum Call where origin: T::Origin {
|
|
/// Used as first key for `NextKeys` and `KeyOwner` to put all the data into the same branch
|
|
/// of the trie.
|
|
const DEDUP_KEY_PREFIX: &[u8] = DEDUP_KEY_PREFIX;
|
|
|
|
type Error = Error<T>;
|
|
|
|
fn deposit_event() = default;
|
|
|
|
/// Sets the session key(s) of the function caller to `keys`.
|
|
/// Allows an account to set its session key prior to becoming a validator.
|
|
/// This doesn't take effect until the next session.
|
|
///
|
|
/// The dispatch origin of this function must be signed.
|
|
///
|
|
/// # <weight>
|
|
/// - O(log n) in number of accounts.
|
|
/// - One extra DB entry.
|
|
/// - Increases system account refs by one on success iff there were previously no keys set.
|
|
/// In this case, purge_keys will need to be called before the account can be removed.
|
|
/// # </weight>
|
|
#[weight = SimpleDispatchInfo::FixedNormal(150_000)]
|
|
fn set_keys(origin, keys: T::Keys, proof: Vec<u8>) -> dispatch::DispatchResult {
|
|
let who = ensure_signed(origin)?;
|
|
|
|
ensure!(keys.ownership_proof_is_valid(&proof), Error::<T>::InvalidProof);
|
|
|
|
Self::do_set_keys(&who, keys)?;
|
|
|
|
Ok(())
|
|
}
|
|
|
|
/// Removes any session key(s) of the function caller.
|
|
/// This doesn't take effect until the next session.
|
|
///
|
|
/// The dispatch origin of this function must be signed.
|
|
///
|
|
/// # <weight>
|
|
/// - O(N) in number of key types.
|
|
/// - Removes N + 1 DB entries.
|
|
/// - Reduces system account refs by one on success.
|
|
/// # </weight>
|
|
#[weight = SimpleDispatchInfo::FixedNormal(150_000)]
|
|
fn purge_keys(origin) {
|
|
let who = ensure_signed(origin)?;
|
|
Self::do_purge_keys(&who)?;
|
|
}
|
|
|
|
/// Called when a block is initialized. Will rotate session if it is the last
|
|
/// block of the current session.
|
|
fn on_initialize(n: T::BlockNumber) {
|
|
if T::ShouldEndSession::should_end_session(n) {
|
|
Self::rotate_session();
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<T: Trait> Module<T> {
|
|
/// Move on to next session. Register new validator set and session keys. Changes
|
|
/// to the validator set have a session of delay to take effect. This allows for
|
|
/// equivocation punishment after a fork.
|
|
pub fn rotate_session() {
|
|
let session_index = CurrentIndex::get();
|
|
|
|
let changed = QueuedChanged::get();
|
|
|
|
// Inform the session handlers that a session is going to end.
|
|
T::SessionHandler::on_before_session_ending();
|
|
|
|
// Get queued session keys and validators.
|
|
let session_keys = <QueuedKeys<T>>::get();
|
|
let validators = session_keys.iter()
|
|
.map(|(validator, _)| validator.clone())
|
|
.collect::<Vec<_>>();
|
|
<Validators<T>>::put(&validators);
|
|
|
|
if changed {
|
|
// reset disabled validators
|
|
DisabledValidators::take();
|
|
}
|
|
|
|
T::SessionManager::end_session(session_index);
|
|
|
|
// Increment session index.
|
|
let session_index = session_index + 1;
|
|
CurrentIndex::put(session_index);
|
|
|
|
// Get next validator set.
|
|
let maybe_next_validators = T::SessionManager::new_session(session_index + 1);
|
|
let (next_validators, next_identities_changed)
|
|
= if let Some(validators) = maybe_next_validators
|
|
{
|
|
// NOTE: as per the documentation on `OnSessionEnding`, we consider
|
|
// the validator set as having changed even if the validators are the
|
|
// same as before, as underlying economic conditions may have changed.
|
|
(validators, true)
|
|
} else {
|
|
(<Validators<T>>::get(), false)
|
|
};
|
|
|
|
// Queue next session keys.
|
|
let (queued_amalgamated, next_changed) = {
|
|
// until we are certain there has been a change, iterate the prior
|
|
// validators along with the current and check for changes
|
|
let mut changed = next_identities_changed;
|
|
|
|
let mut now_session_keys = session_keys.iter();
|
|
let mut check_next_changed = |keys: &T::Keys| {
|
|
if changed { return }
|
|
// since a new validator set always leads to `changed` starting
|
|
// as true, we can ensure that `now_session_keys` and `next_validators`
|
|
// have the same length. this function is called once per iteration.
|
|
if let Some(&(_, ref old_keys)) = now_session_keys.next() {
|
|
if old_keys != keys {
|
|
changed = true;
|
|
return
|
|
}
|
|
}
|
|
};
|
|
let queued_amalgamated = next_validators.into_iter()
|
|
.map(|a| {
|
|
let k = Self::load_keys(&a).unwrap_or_default();
|
|
check_next_changed(&k);
|
|
(a, k)
|
|
})
|
|
.collect::<Vec<_>>();
|
|
|
|
(queued_amalgamated, changed)
|
|
};
|
|
|
|
<QueuedKeys<T>>::put(queued_amalgamated.clone());
|
|
QueuedChanged::put(next_changed);
|
|
|
|
// Record that this happened.
|
|
Self::deposit_event(Event::NewSession(session_index));
|
|
|
|
// Tell everyone about the new session keys.
|
|
T::SessionHandler::on_new_session::<T::Keys>(
|
|
changed,
|
|
&session_keys,
|
|
&queued_amalgamated,
|
|
);
|
|
}
|
|
|
|
/// Disable the validator of index `i`.
|
|
///
|
|
/// Returns `true` if this causes a `DisabledValidatorsThreshold` of validators
|
|
/// to be already disabled.
|
|
pub fn disable_index(i: usize) -> bool {
|
|
let (fire_event, threshold_reached) = DisabledValidators::mutate(|disabled| {
|
|
let i = i as u32;
|
|
if let Err(index) = disabled.binary_search(&i) {
|
|
let count = <Validators<T>>::decode_len().unwrap_or(0) as u32;
|
|
let threshold = T::DisabledValidatorsThreshold::get() * count;
|
|
disabled.insert(index, i);
|
|
(true, disabled.len() as u32 > threshold)
|
|
} else {
|
|
(false, false)
|
|
}
|
|
});
|
|
|
|
if fire_event {
|
|
T::SessionHandler::on_disabled(i);
|
|
}
|
|
|
|
threshold_reached
|
|
}
|
|
|
|
/// Disable the validator identified by `c`. (If using with the staking module,
|
|
/// this would be their *stash* account.)
|
|
///
|
|
/// Returns `Ok(true)` if more than `DisabledValidatorsThreshold` validators in current
|
|
/// session is already disabled.
|
|
/// If used with the staking module it allows to force a new era in such case.
|
|
pub fn disable(c: &T::ValidatorId) -> sp_std::result::Result<bool, ()> {
|
|
Self::validators().iter().position(|i| i == c).map(Self::disable_index).ok_or(())
|
|
}
|
|
|
|
/// Perform the set_key operation, checking for duplicates. Does not set `Changed`.
|
|
///
|
|
/// This ensures that the reference counter in system is incremented appropriately and as such
|
|
/// must accept an account ID, rather than a validator ID.
|
|
fn do_set_keys(account: &T::AccountId, keys: T::Keys) -> dispatch::DispatchResult {
|
|
let who = T::ValidatorIdOf::convert(account.clone())
|
|
.ok_or(Error::<T>::NoAssociatedValidatorId)?;
|
|
|
|
let old_keys = Self::inner_set_keys(&who, keys)?;
|
|
if old_keys.is_none() {
|
|
system::Module::<T>::inc_ref(&account);
|
|
}
|
|
|
|
Ok(())
|
|
}
|
|
|
|
/// Perform the set_key operation, checking for duplicates. Does not set `Changed`.
|
|
///
|
|
/// The old keys for this validator are returned, or `None` if there were none.
|
|
///
|
|
/// This does not ensure that the reference counter in system is incremented appropriately, it
|
|
/// must be done by the caller or the keys will be leaked in storage.
|
|
fn inner_set_keys(who: &T::ValidatorId, keys: T::Keys) -> Result<Option<T::Keys>, DispatchError> {
|
|
let old_keys = Self::load_keys(who);
|
|
|
|
for id in T::Keys::key_ids() {
|
|
let key = keys.get_raw(*id);
|
|
|
|
// ensure keys are without duplication.
|
|
ensure!(
|
|
Self::key_owner(*id, key).map_or(true, |owner| &owner == who),
|
|
Error::<T>::DuplicatedKey,
|
|
);
|
|
|
|
if let Some(old) = old_keys.as_ref().map(|k| k.get_raw(*id)) {
|
|
if key == old {
|
|
continue;
|
|
}
|
|
|
|
Self::clear_key_owner(*id, old);
|
|
}
|
|
|
|
Self::put_key_owner(*id, key, who);
|
|
}
|
|
|
|
Self::put_keys(who, &keys);
|
|
Ok(old_keys)
|
|
}
|
|
|
|
fn do_purge_keys(account: &T::AccountId) -> DispatchResult {
|
|
let who = T::ValidatorIdOf::convert(account.clone())
|
|
.ok_or(Error::<T>::NoAssociatedValidatorId)?;
|
|
|
|
let old_keys = Self::take_keys(&who).ok_or(Error::<T>::NoKeys)?;
|
|
for id in T::Keys::key_ids() {
|
|
let key_data = old_keys.get_raw(*id);
|
|
Self::clear_key_owner(*id, key_data);
|
|
}
|
|
system::Module::<T>::dec_ref(&account);
|
|
|
|
Ok(())
|
|
}
|
|
|
|
fn load_keys(v: &T::ValidatorId) -> Option<T::Keys> {
|
|
<NextKeys<T>>::get(DEDUP_KEY_PREFIX, v)
|
|
}
|
|
|
|
fn take_keys(v: &T::ValidatorId) -> Option<T::Keys> {
|
|
<NextKeys<T>>::take(DEDUP_KEY_PREFIX, v)
|
|
}
|
|
|
|
fn put_keys(v: &T::ValidatorId, keys: &T::Keys) {
|
|
<NextKeys<T>>::insert(DEDUP_KEY_PREFIX, v, keys);
|
|
}
|
|
|
|
fn key_owner(id: KeyTypeId, key_data: &[u8]) -> Option<T::ValidatorId> {
|
|
<KeyOwner<T>>::get(DEDUP_KEY_PREFIX, (id, key_data))
|
|
}
|
|
|
|
fn put_key_owner(id: KeyTypeId, key_data: &[u8], v: &T::ValidatorId) {
|
|
<KeyOwner<T>>::insert(DEDUP_KEY_PREFIX, (id, key_data), v)
|
|
}
|
|
|
|
fn clear_key_owner(id: KeyTypeId, key_data: &[u8]) {
|
|
<KeyOwner<T>>::remove(DEDUP_KEY_PREFIX, (id, key_data));
|
|
}
|
|
}
|
|
|
|
/// Wraps the author-scraping logic for consensus engines that can recover
|
|
/// the canonical index of an author. This then transforms it into the
|
|
/// registering account-ID of that session key index.
|
|
pub struct FindAccountFromAuthorIndex<T, Inner>(sp_std::marker::PhantomData<(T, Inner)>);
|
|
|
|
impl<T: Trait, Inner: FindAuthor<u32>> FindAuthor<T::ValidatorId>
|
|
for FindAccountFromAuthorIndex<T, Inner>
|
|
{
|
|
fn find_author<'a, I>(digests: I) -> Option<T::ValidatorId>
|
|
where I: 'a + IntoIterator<Item=(ConsensusEngineId, &'a [u8])>
|
|
{
|
|
let i = Inner::find_author(digests)?;
|
|
|
|
let validators = <Module<T>>::validators();
|
|
validators.get(i as usize).map(|k| k.clone())
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use super::*;
|
|
use frame_support::assert_ok;
|
|
use sp_core::crypto::key_types::DUMMY;
|
|
use sp_runtime::{traits::OnInitialize, testing::UintAuthorityId};
|
|
use mock::{
|
|
NEXT_VALIDATORS, SESSION_CHANGED, TEST_SESSION_CHANGED, authorities, force_new_session,
|
|
set_next_validators, set_session_length, session_changed, Test, Origin, System, Session,
|
|
reset_before_session_end_called, before_session_end_called,
|
|
};
|
|
|
|
fn new_test_ext() -> sp_io::TestExternalities {
|
|
let mut t = frame_system::GenesisConfig::default().build_storage::<Test>().unwrap();
|
|
GenesisConfig::<Test> {
|
|
keys: NEXT_VALIDATORS.with(|l|
|
|
l.borrow().iter().cloned().map(|i| (i, i, UintAuthorityId(i).into())).collect()
|
|
),
|
|
}.assimilate_storage(&mut t).unwrap();
|
|
sp_io::TestExternalities::new(t)
|
|
}
|
|
|
|
fn initialize_block(block: u64) {
|
|
SESSION_CHANGED.with(|l| *l.borrow_mut() = false);
|
|
System::set_block_number(block);
|
|
Session::on_initialize(block);
|
|
}
|
|
|
|
#[test]
|
|
fn simple_setup_should_work() {
|
|
new_test_ext().execute_with(|| {
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
assert_eq!(Session::validators(), vec![1, 2, 3]);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn put_get_keys() {
|
|
new_test_ext().execute_with(|| {
|
|
Session::put_keys(&10, &UintAuthorityId(10).into());
|
|
assert_eq!(Session::load_keys(&10), Some(UintAuthorityId(10).into()));
|
|
})
|
|
}
|
|
|
|
#[test]
|
|
fn keys_cleared_on_kill() {
|
|
let mut ext = new_test_ext();
|
|
ext.execute_with(|| {
|
|
assert_eq!(Session::validators(), vec![1, 2, 3]);
|
|
assert_eq!(Session::load_keys(&1), Some(UintAuthorityId(1).into()));
|
|
|
|
let id = DUMMY;
|
|
assert_eq!(Session::key_owner(id, UintAuthorityId(1).get_raw(id)), Some(1));
|
|
|
|
assert!(!System::allow_death(&1));
|
|
assert_ok!(Session::purge_keys(Origin::signed(1)));
|
|
assert!(System::allow_death(&1));
|
|
|
|
assert_eq!(Session::load_keys(&1), None);
|
|
assert_eq!(Session::key_owner(id, UintAuthorityId(1).get_raw(id)), None);
|
|
})
|
|
}
|
|
|
|
#[test]
|
|
fn authorities_should_track_validators() {
|
|
reset_before_session_end_called();
|
|
|
|
new_test_ext().execute_with(|| {
|
|
set_next_validators(vec![1, 2]);
|
|
force_new_session();
|
|
initialize_block(1);
|
|
assert_eq!(Session::queued_keys(), vec![
|
|
(1, UintAuthorityId(1).into()),
|
|
(2, UintAuthorityId(2).into()),
|
|
]);
|
|
assert_eq!(Session::validators(), vec![1, 2, 3]);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
force_new_session();
|
|
initialize_block(2);
|
|
assert_eq!(Session::queued_keys(), vec![
|
|
(1, UintAuthorityId(1).into()),
|
|
(2, UintAuthorityId(2).into()),
|
|
]);
|
|
assert_eq!(Session::validators(), vec![1, 2]);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2)]);
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
set_next_validators(vec![1, 2, 4]);
|
|
assert_ok!(Session::set_keys(Origin::signed(4), UintAuthorityId(4).into(), vec![]));
|
|
force_new_session();
|
|
initialize_block(3);
|
|
assert_eq!(Session::queued_keys(), vec![
|
|
(1, UintAuthorityId(1).into()),
|
|
(2, UintAuthorityId(2).into()),
|
|
(4, UintAuthorityId(4).into()),
|
|
]);
|
|
assert_eq!(Session::validators(), vec![1, 2]);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2)]);
|
|
assert!(before_session_end_called());
|
|
|
|
force_new_session();
|
|
initialize_block(4);
|
|
assert_eq!(Session::queued_keys(), vec![
|
|
(1, UintAuthorityId(1).into()),
|
|
(2, UintAuthorityId(2).into()),
|
|
(4, UintAuthorityId(4).into()),
|
|
]);
|
|
assert_eq!(Session::validators(), vec![1, 2, 4]);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(4)]);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn should_work_with_early_exit() {
|
|
new_test_ext().execute_with(|| {
|
|
set_session_length(10);
|
|
|
|
initialize_block(1);
|
|
assert_eq!(Session::current_index(), 0);
|
|
|
|
initialize_block(2);
|
|
assert_eq!(Session::current_index(), 0);
|
|
|
|
force_new_session();
|
|
initialize_block(3);
|
|
assert_eq!(Session::current_index(), 1);
|
|
|
|
initialize_block(9);
|
|
assert_eq!(Session::current_index(), 1);
|
|
|
|
initialize_block(10);
|
|
assert_eq!(Session::current_index(), 2);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn session_change_should_work() {
|
|
new_test_ext().execute_with(|| {
|
|
// Block 1: No change
|
|
initialize_block(1);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
|
|
// Block 2: Session rollover, but no change.
|
|
initialize_block(2);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
|
|
// Block 3: Set new key for validator 2; no visible change.
|
|
initialize_block(3);
|
|
assert_ok!(Session::set_keys(Origin::signed(2), UintAuthorityId(5).into(), vec![]));
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
|
|
// Block 4: Session rollover; no visible change.
|
|
initialize_block(4);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
|
|
// Block 5: No change.
|
|
initialize_block(5);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(2), UintAuthorityId(3)]);
|
|
|
|
// Block 6: Session rollover; authority 2 changes.
|
|
initialize_block(6);
|
|
assert_eq!(authorities(), vec![UintAuthorityId(1), UintAuthorityId(5), UintAuthorityId(3)]);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn duplicates_are_not_allowed() {
|
|
new_test_ext().execute_with(|| {
|
|
System::set_block_number(1);
|
|
Session::on_initialize(1);
|
|
assert!(Session::set_keys(Origin::signed(4), UintAuthorityId(1).into(), vec![]).is_err());
|
|
assert!(Session::set_keys(Origin::signed(1), UintAuthorityId(10).into(), vec![]).is_ok());
|
|
|
|
// is fine now that 1 has migrated off.
|
|
assert!(Session::set_keys(Origin::signed(4), UintAuthorityId(1).into(), vec![]).is_ok());
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn session_changed_flag_works() {
|
|
reset_before_session_end_called();
|
|
|
|
new_test_ext().execute_with(|| {
|
|
TEST_SESSION_CHANGED.with(|l| *l.borrow_mut() = true);
|
|
|
|
force_new_session();
|
|
initialize_block(1);
|
|
assert!(!session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
force_new_session();
|
|
initialize_block(2);
|
|
assert!(!session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
Session::disable_index(0);
|
|
force_new_session();
|
|
initialize_block(3);
|
|
assert!(!session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
force_new_session();
|
|
initialize_block(4);
|
|
assert!(session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
force_new_session();
|
|
initialize_block(5);
|
|
assert!(!session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
assert_ok!(Session::set_keys(Origin::signed(2), UintAuthorityId(5).into(), vec![]));
|
|
force_new_session();
|
|
initialize_block(6);
|
|
assert!(!session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
// changing the keys of a validator leads to change.
|
|
assert_ok!(Session::set_keys(Origin::signed(69), UintAuthorityId(69).into(), vec![]));
|
|
force_new_session();
|
|
initialize_block(7);
|
|
assert!(session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
|
|
// while changing the keys of a non-validator does not.
|
|
force_new_session();
|
|
initialize_block(7);
|
|
assert!(!session_changed());
|
|
assert!(before_session_end_called());
|
|
reset_before_session_end_called();
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn periodic_session_works() {
|
|
struct Period;
|
|
struct Offset;
|
|
|
|
impl Get<u64> for Period {
|
|
fn get() -> u64 { 10 }
|
|
}
|
|
|
|
impl Get<u64> for Offset {
|
|
fn get() -> u64 { 3 }
|
|
}
|
|
|
|
|
|
type P = PeriodicSessions<Period, Offset>;
|
|
|
|
for i in 0..3 {
|
|
assert!(!P::should_end_session(i));
|
|
}
|
|
|
|
assert!(P::should_end_session(3));
|
|
|
|
for i in (1..10).map(|i| 3 + i) {
|
|
assert!(!P::should_end_session(i));
|
|
}
|
|
|
|
assert!(P::should_end_session(13));
|
|
}
|
|
|
|
#[test]
|
|
fn session_keys_generate_output_works_as_set_keys_input() {
|
|
new_test_ext().execute_with(|| {
|
|
let new_keys = mock::MockSessionKeys::generate(None);
|
|
assert_ok!(
|
|
Session::set_keys(
|
|
Origin::signed(2),
|
|
<mock::Test as Trait>::Keys::decode(&mut &new_keys[..]).expect("Decode keys"),
|
|
vec![],
|
|
)
|
|
);
|
|
});
|
|
}
|
|
|
|
#[test]
|
|
fn return_true_if_more_than_third_is_disabled() {
|
|
new_test_ext().execute_with(|| {
|
|
set_next_validators(vec![1, 2, 3, 4, 5, 6, 7]);
|
|
force_new_session();
|
|
initialize_block(1);
|
|
// apply the new validator set
|
|
force_new_session();
|
|
initialize_block(2);
|
|
|
|
assert_eq!(Session::disable_index(0), false);
|
|
assert_eq!(Session::disable_index(1), false);
|
|
assert_eq!(Session::disable_index(2), true);
|
|
assert_eq!(Session::disable_index(3), true);
|
|
});
|
|
}
|
|
}
|