mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-30 05:51:02 +00:00
eb0159f288
* initial hack in * finish up * use notification to pass outgoing paras * move outgoing paras from notifications * missing comma * update guides * clean up
375 lines
11 KiB
Rust
375 lines
11 KiB
Rust
// Copyright 2020 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot 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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// Polkadot 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 Polkadot. If not, see <http://www.gnu.org/licenses/>.
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//! This module is responsible for maintaining a consistent initialization order for all other
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//! parachains modules. It's also responsible for finalization and session change notifications.
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//!
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//! This module can throw fatal errors if session-change notifications are received after initialization.
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use sp_std::prelude::*;
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use frame_support::weights::Weight;
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use primitives::v1::ValidatorId;
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use frame_support::{
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decl_storage, decl_module, decl_error, traits::{OneSessionHandler, Randomness},
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};
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use parity_scale_codec::{Encode, Decode};
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use crate::{
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configuration::{self, HostConfiguration},
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paras, scheduler, inclusion, session_info, dmp, ump, hrmp,
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};
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/// Information about a session change that has just occurred.
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#[derive(Clone)]
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pub struct SessionChangeNotification<BlockNumber> {
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/// The new validators in the session.
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pub validators: Vec<ValidatorId>,
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/// The qeueud validators for the following session.
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pub queued: Vec<ValidatorId>,
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/// The configuration before handling the session change
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pub prev_config: HostConfiguration<BlockNumber>,
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/// The configuration after handling the session change.
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pub new_config: HostConfiguration<BlockNumber>,
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/// A secure random seed for the session, gathered from BABE.
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pub random_seed: [u8; 32],
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/// New session index.
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pub session_index: sp_staking::SessionIndex,
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}
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impl<BlockNumber: Default + From<u32>> Default for SessionChangeNotification<BlockNumber> {
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fn default() -> Self {
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Self {
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validators: Vec::new(),
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queued: Vec::new(),
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prev_config: HostConfiguration::default(),
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new_config: HostConfiguration::default(),
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random_seed: Default::default(),
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session_index: Default::default(),
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}
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}
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}
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#[derive(Encode, Decode)]
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struct BufferedSessionChange {
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validators: Vec<ValidatorId>,
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queued: Vec<ValidatorId>,
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session_index: sp_staking::SessionIndex,
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}
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pub trait Config:
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frame_system::Config
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+ configuration::Config
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+ paras::Config
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+ scheduler::Config
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+ inclusion::Config
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+ session_info::Config
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+ dmp::Config
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+ ump::Config
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+ hrmp::Config
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{
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/// A randomness beacon.
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type Randomness: Randomness<Self::Hash>;
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}
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decl_storage! {
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trait Store for Module<T: Config> as Initializer {
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/// Whether the parachains modules have been initialized within this block.
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///
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/// Semantically a bool, but this guarantees it should never hit the trie,
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/// as this is cleared in `on_finalize` and Frame optimizes `None` values to be empty values.
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///
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/// As a bool, `set(false)` and `remove()` both lead to the next `get()` being false, but one of
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/// them writes to the trie and one does not. This confusion makes `Option<()>` more suitable for
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/// the semantics of this variable.
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HasInitialized: Option<()>;
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/// Buffered session changes along with the block number at which they should be applied.
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///
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/// Typically this will be empty or one element long. Apart from that this item never hits
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/// the storage.
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///
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/// However this is a `Vec` regardless to handle various edge cases that may occur at runtime
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/// upgrade boundaries or if governance intervenes.
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BufferedSessionChanges: Vec<BufferedSessionChange>;
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}
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}
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decl_error! {
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pub enum Error for Module<T: Config> { }
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}
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decl_module! {
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/// The initializer module.
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pub struct Module<T: Config> for enum Call where origin: <T as frame_system::Config>::Origin {
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type Error = Error<T>;
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fn on_initialize(now: T::BlockNumber) -> Weight {
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// The other modules are initialized in this order:
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// - Configuration
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// - Paras
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// - Scheduler
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// - Inclusion
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// - SessionInfo
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// - Validity
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// - DMP
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// - UMP
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// - HRMP
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let total_weight = configuration::Module::<T>::initializer_initialize(now) +
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paras::Module::<T>::initializer_initialize(now) +
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scheduler::Module::<T>::initializer_initialize(now) +
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inclusion::Module::<T>::initializer_initialize(now) +
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session_info::Module::<T>::initializer_initialize(now) +
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dmp::Module::<T>::initializer_initialize(now) +
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ump::Module::<T>::initializer_initialize(now) +
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hrmp::Module::<T>::initializer_initialize(now);
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HasInitialized::set(Some(()));
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total_weight
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}
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fn on_finalize() {
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// reverse initialization order.
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hrmp::Module::<T>::initializer_finalize();
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ump::Module::<T>::initializer_finalize();
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dmp::Module::<T>::initializer_finalize();
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session_info::Module::<T>::initializer_finalize();
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inclusion::Module::<T>::initializer_finalize();
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scheduler::Module::<T>::initializer_finalize();
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paras::Module::<T>::initializer_finalize();
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configuration::Module::<T>::initializer_finalize();
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// Apply buffered session changes as the last thing. This way the runtime APIs and the
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// next block will observe the next session.
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//
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// Note that we only apply the last session as all others lasted less than a block (weirdly).
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if let Some(BufferedSessionChange {
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session_index,
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validators,
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queued,
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}) = BufferedSessionChanges::take().pop()
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{
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Self::apply_new_session(session_index, validators, queued);
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}
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HasInitialized::take();
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}
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}
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}
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impl<T: Config> Module<T> {
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fn apply_new_session(
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session_index: sp_staking::SessionIndex,
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validators: Vec<ValidatorId>,
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queued: Vec<ValidatorId>,
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) {
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let prev_config = <configuration::Module<T>>::config();
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let random_seed = {
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let mut buf = [0u8; 32];
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let random_hash = T::Randomness::random(&b"paras"[..]);
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let len = sp_std::cmp::min(32, random_hash.as_ref().len());
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buf[..len].copy_from_slice(&random_hash.as_ref()[..len]);
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buf
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};
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// We can't pass the new config into the thing that determines the new config,
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// so we don't pass the `SessionChangeNotification` into this module.
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configuration::Module::<T>::initializer_on_new_session(&validators, &queued);
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let new_config = <configuration::Module<T>>::config();
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let notification = SessionChangeNotification {
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validators,
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queued,
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prev_config,
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new_config,
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random_seed,
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session_index,
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};
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let outgoing_paras = paras::Module::<T>::initializer_on_new_session(¬ification);
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scheduler::Module::<T>::initializer_on_new_session(¬ification);
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inclusion::Module::<T>::initializer_on_new_session(¬ification);
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session_info::Module::<T>::initializer_on_new_session(¬ification);
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dmp::Module::<T>::initializer_on_new_session(¬ification, &outgoing_paras);
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ump::Module::<T>::initializer_on_new_session(¬ification, &outgoing_paras);
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hrmp::Module::<T>::initializer_on_new_session(¬ification, &outgoing_paras);
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}
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/// Should be called when a new session occurs. Buffers the session notification to be applied
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/// at the end of the block. If `queued` is `None`, the `validators` are considered queued.
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fn on_new_session<'a, I: 'a>(
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_changed: bool,
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session_index: sp_staking::SessionIndex,
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validators: I,
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queued: Option<I>,
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)
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where I: Iterator<Item=(&'a T::AccountId, ValidatorId)>
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{
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let validators: Vec<_> = validators.map(|(_, v)| v).collect();
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let queued: Vec<_> = if let Some(queued) = queued {
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queued.map(|(_, v)| v).collect()
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} else {
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validators.clone()
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};
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BufferedSessionChanges::mutate(|v| v.push(BufferedSessionChange {
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validators,
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queued,
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session_index,
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}));
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}
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}
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impl<T: Config> sp_runtime::BoundToRuntimeAppPublic for Module<T> {
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type Public = ValidatorId;
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}
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impl<T: pallet_session::Config + Config> OneSessionHandler<T::AccountId> for Module<T> {
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type Key = ValidatorId;
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fn on_genesis_session<'a, I: 'a>(_validators: I)
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where I: Iterator<Item=(&'a T::AccountId, Self::Key)>
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{
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}
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fn on_new_session<'a, I: 'a>(changed: bool, validators: I, queued: I)
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where I: Iterator<Item=(&'a T::AccountId, Self::Key)>
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{
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let session_index = <pallet_session::Module<T>>::current_index();
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<Module<T>>::on_new_session(changed, session_index, validators, Some(queued));
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}
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fn on_disabled(_i: usize) { }
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use primitives::v1::{Id as ParaId};
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use crate::mock::{
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new_test_ext,
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Initializer, System, Dmp, Paras, Configuration, MockGenesisConfig,
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};
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use frame_support::{
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assert_ok,
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traits::{OnFinalize, OnInitialize},
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};
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#[test]
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fn session_change_before_initialize_is_still_buffered_after() {
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new_test_ext(Default::default()).execute_with(|| {
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Initializer::on_new_session(
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false,
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1,
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Vec::new().into_iter(),
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Some(Vec::new().into_iter()),
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);
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let now = System::block_number();
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Initializer::on_initialize(now);
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let v = <BufferedSessionChanges>::get();
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assert_eq!(v.len(), 1);
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});
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}
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#[test]
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fn session_change_applied_on_finalize() {
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new_test_ext(Default::default()).execute_with(|| {
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Initializer::on_initialize(1);
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Initializer::on_new_session(
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false,
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1,
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Vec::new().into_iter(),
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Some(Vec::new().into_iter()),
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);
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Initializer::on_finalize(1);
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assert!(<BufferedSessionChanges>::get().is_empty());
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});
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}
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#[test]
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fn sets_flag_on_initialize() {
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new_test_ext(Default::default()).execute_with(|| {
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Initializer::on_initialize(1);
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assert!(HasInitialized::get().is_some());
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})
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}
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#[test]
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fn clears_flag_on_finalize() {
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new_test_ext(Default::default()).execute_with(|| {
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Initializer::on_initialize(1);
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Initializer::on_finalize(1);
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assert!(HasInitialized::get().is_none());
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})
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}
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#[test]
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fn scheduled_cleanup_performed() {
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let a = ParaId::from(1312);
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let b = ParaId::from(228);
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let c = ParaId::from(123);
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let mock_genesis = crate::paras::ParaGenesisArgs {
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parachain: true,
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genesis_head: Default::default(),
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validation_code: Default::default(),
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};
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new_test_ext(
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MockGenesisConfig {
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configuration: crate::configuration::GenesisConfig {
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config: crate::configuration::HostConfiguration {
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max_downward_message_size: 1024,
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..Default::default()
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},
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},
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paras: crate::paras::GenesisConfig {
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paras: vec![
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(a, mock_genesis.clone()),
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(b, mock_genesis.clone()),
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(c, mock_genesis.clone()),
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],
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..Default::default()
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},
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..Default::default()
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}
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).execute_with(|| {
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// enqueue downward messages to A, B and C.
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assert_ok!(Dmp::queue_downward_message(&Configuration::config(), a, vec![1, 2, 3]));
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assert_ok!(Dmp::queue_downward_message(&Configuration::config(), b, vec![4, 5, 6]));
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assert_ok!(Dmp::queue_downward_message(&Configuration::config(), c, vec![7, 8, 9]));
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Paras::schedule_para_cleanup(a);
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Paras::schedule_para_cleanup(b);
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Initializer::apply_new_session(1, vec![], vec![]);
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assert!(Dmp::dmq_contents(a).is_empty());
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assert!(Dmp::dmq_contents(b).is_empty());
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assert!(!Dmp::dmq_contents(c).is_empty());
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});
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}
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}
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