mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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6ccb5dc713
* Clearer API to code against.
884 lines
29 KiB
Rust
884 lines
29 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2019-2021 Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: Apache-2.0
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//! # I'm online Pallet
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//!
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//! If the local node is a validator (i.e. contains an authority key), this module
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//! gossips a heartbeat transaction with each new session. The heartbeat functions
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//! as a simple mechanism to signal that the node is online in the current era.
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//!
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//! Received heartbeats are tracked for one era and reset with each new era. The
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//! module exposes two public functions to query if a heartbeat has been received
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//! in the current era or session.
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//!
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//! The heartbeat is a signed transaction, which was signed using the session key
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//! and includes the recent best block number of the local validators chain as well
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//! as the [NetworkState](../../client/offchain/struct.NetworkState.html).
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//! It is submitted as an Unsigned Transaction via off-chain workers.
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//!
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//! - [`Config`]
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//! - [`Call`]
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//! - [`Pallet`]
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//!
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//! ## Interface
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//!
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//! ### Public Functions
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//!
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//! - `is_online` - True if the validator sent a heartbeat in the current session.
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//!
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//! ## Usage
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//!
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//! ```
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//! use frame_support::{decl_module, dispatch};
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//! use frame_system::ensure_signed;
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//! use pallet_im_online::{self as im_online};
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//!
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//! pub trait Config: im_online::Config {}
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//!
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//! decl_module! {
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//! pub struct Module<T: Config> for enum Call where origin: T::Origin {
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//! #[weight = 0]
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//! pub fn is_online(origin, authority_index: u32) -> dispatch::DispatchResult {
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//! let _sender = ensure_signed(origin)?;
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//! let _is_online = <im_online::Pallet<T>>::is_online(authority_index);
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//! Ok(())
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//! }
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//! }
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//! }
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//! # fn main() { }
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//! ```
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//!
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//! ## Dependencies
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//!
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//! This module depends on the [Session module](../pallet_session/index.html).
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// Ensure we're `no_std` when compiling for Wasm.
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#![cfg_attr(not(feature = "std"), no_std)]
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mod mock;
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mod tests;
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mod benchmarking;
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pub mod weights;
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use sp_application_crypto::RuntimeAppPublic;
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use codec::{Encode, Decode};
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use sp_core::offchain::OpaqueNetworkState;
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use sp_std::prelude::*;
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use sp_std::convert::TryInto;
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use sp_runtime::{
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offchain::storage::{MutateStorageError, StorageRetrievalError, StorageValueRef},
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traits::{AtLeast32BitUnsigned, Convert, Saturating, TrailingZeroInput},
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Perbill, Permill, PerThing, RuntimeDebug, SaturatedConversion,
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};
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use sp_staking::{
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SessionIndex,
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offence::{ReportOffence, Offence, Kind},
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};
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use frame_support::traits::{
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EstimateNextSessionRotation, OneSessionHandler, ValidatorSet, ValidatorSetWithIdentification,
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};
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use frame_system::offchain::{SendTransactionTypes, SubmitTransaction};
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pub use weights::WeightInfo;
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pub use pallet::*;
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pub mod sr25519 {
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mod app_sr25519 {
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use sp_application_crypto::{app_crypto, key_types::IM_ONLINE, sr25519};
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app_crypto!(sr25519, IM_ONLINE);
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}
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sp_application_crypto::with_pair! {
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/// An i'm online keypair using sr25519 as its crypto.
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pub type AuthorityPair = app_sr25519::Pair;
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}
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/// An i'm online signature using sr25519 as its crypto.
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pub type AuthoritySignature = app_sr25519::Signature;
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/// An i'm online identifier using sr25519 as its crypto.
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pub type AuthorityId = app_sr25519::Public;
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}
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pub mod ed25519 {
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mod app_ed25519 {
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use sp_application_crypto::{app_crypto, key_types::IM_ONLINE, ed25519};
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app_crypto!(ed25519, IM_ONLINE);
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}
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sp_application_crypto::with_pair! {
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/// An i'm online keypair using ed25519 as its crypto.
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pub type AuthorityPair = app_ed25519::Pair;
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}
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/// An i'm online signature using ed25519 as its crypto.
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pub type AuthoritySignature = app_ed25519::Signature;
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/// An i'm online identifier using ed25519 as its crypto.
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pub type AuthorityId = app_ed25519::Public;
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}
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const DB_PREFIX: &[u8] = b"parity/im-online-heartbeat/";
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/// How many blocks do we wait for heartbeat transaction to be included
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/// before sending another one.
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const INCLUDE_THRESHOLD: u32 = 3;
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/// Status of the offchain worker code.
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///
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/// This stores the block number at which heartbeat was requested and when the worker
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/// has actually managed to produce it.
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/// Note we store such status for every `authority_index` separately.
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#[derive(Encode, Decode, Clone, PartialEq, Eq, RuntimeDebug)]
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struct HeartbeatStatus<BlockNumber> {
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/// An index of the session that we are supposed to send heartbeat for.
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pub session_index: SessionIndex,
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/// A block number at which the heartbeat for that session has been actually sent.
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///
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/// It may be 0 in case the sending failed. In such case we should just retry
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/// as soon as possible (i.e. in a worker running for the next block).
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pub sent_at: BlockNumber,
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}
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impl<BlockNumber: PartialEq + AtLeast32BitUnsigned + Copy> HeartbeatStatus<BlockNumber> {
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/// Returns true if heartbeat has been recently sent.
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///
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/// Parameters:
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/// `session_index` - index of current session.
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/// `now` - block at which the offchain worker is running.
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///
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/// This function will return `true` iff:
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/// 1. the session index is the same (we don't care if it went up or down)
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/// 2. the heartbeat has been sent recently (within the threshold)
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///
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/// The reasoning for 1. is that it's better to send an extra heartbeat than
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/// to stall or not send one in case of a bug.
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fn is_recent(&self, session_index: SessionIndex, now: BlockNumber) -> bool {
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self.session_index == session_index && self.sent_at + INCLUDE_THRESHOLD.into() > now
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}
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}
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/// Error which may occur while executing the off-chain code.
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#[cfg_attr(test, derive(PartialEq))]
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enum OffchainErr<BlockNumber> {
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TooEarly,
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WaitingForInclusion(BlockNumber),
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AlreadyOnline(u32),
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FailedSigning,
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FailedToAcquireLock,
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NetworkState,
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SubmitTransaction,
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}
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impl<BlockNumber: sp_std::fmt::Debug> sp_std::fmt::Debug for OffchainErr<BlockNumber> {
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fn fmt(&self, fmt: &mut sp_std::fmt::Formatter) -> sp_std::fmt::Result {
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match *self {
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OffchainErr::TooEarly =>
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write!(fmt, "Too early to send heartbeat."),
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OffchainErr::WaitingForInclusion(ref block) =>
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write!(fmt, "Heartbeat already sent at {:?}. Waiting for inclusion.", block),
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OffchainErr::AlreadyOnline(auth_idx) =>
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write!(fmt, "Authority {} is already online", auth_idx),
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OffchainErr::FailedSigning => write!(fmt, "Failed to sign heartbeat"),
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OffchainErr::FailedToAcquireLock => write!(fmt, "Failed to acquire lock"),
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OffchainErr::NetworkState => write!(fmt, "Failed to fetch network state"),
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OffchainErr::SubmitTransaction => write!(fmt, "Failed to submit transaction"),
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}
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}
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}
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pub type AuthIndex = u32;
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/// Heartbeat which is sent/received.
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#[derive(Encode, Decode, Clone, PartialEq, Eq, RuntimeDebug)]
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pub struct Heartbeat<BlockNumber>
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where BlockNumber: PartialEq + Eq + Decode + Encode,
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{
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/// Block number at the time heartbeat is created..
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pub block_number: BlockNumber,
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/// A state of local network (peer id and external addresses)
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pub network_state: OpaqueNetworkState,
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/// Index of the current session.
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pub session_index: SessionIndex,
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/// An index of the authority on the list of validators.
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pub authority_index: AuthIndex,
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/// The length of session validator set
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pub validators_len: u32,
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}
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/// A type for representing the validator id in a session.
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pub type ValidatorId<T> = <
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<T as Config>::ValidatorSet as ValidatorSet<<T as frame_system::Config>::AccountId>
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>::ValidatorId;
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/// A tuple of (ValidatorId, Identification) where `Identification` is the full identification of `ValidatorId`.
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pub type IdentificationTuple<T> = (
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ValidatorId<T>,
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<<T as Config>::ValidatorSet as
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ValidatorSetWithIdentification<<T as frame_system::Config>::AccountId>>::Identification,
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);
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type OffchainResult<T, A> = Result<A, OffchainErr<<T as frame_system::Config>::BlockNumber>>;
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#[frame_support::pallet]
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pub mod pallet {
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use frame_support::{pallet_prelude::*, traits::Get};
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use frame_system::{pallet_prelude::*, ensure_none};
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use sp_runtime::{
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traits::{Member, MaybeSerializeDeserialize},
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transaction_validity::{
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InvalidTransaction, TransactionPriority, TransactionSource, TransactionValidity, ValidTransaction,
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},
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};
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use frame_support::Parameter;
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use super::*;
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#[pallet::pallet]
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#[pallet::generate_store(pub(super) trait Store)]
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pub struct Pallet<T>(_);
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#[pallet::config]
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pub trait Config: SendTransactionTypes<Call<Self>> + frame_system::Config {
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/// The identifier type for an authority.
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type AuthorityId: Member + Parameter + RuntimeAppPublic + Default + Ord + MaybeSerializeDeserialize;
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/// The overarching event type.
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type Event: From<Event<Self>> + IsType<<Self as frame_system::Config>::Event>;
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/// A type for retrieving the validators supposed to be online in a session.
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type ValidatorSet: ValidatorSetWithIdentification<Self::AccountId>;
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/// A trait that allows us to estimate the current session progress and also the
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/// average session length.
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///
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/// This parameter is used to determine the longevity of `heartbeat` transaction and a
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/// rough time when we should start considering sending heartbeats, since the workers
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/// avoids sending them at the very beginning of the session, assuming there is a
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/// chance the authority will produce a block and they won't be necessary.
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type NextSessionRotation: EstimateNextSessionRotation<Self::BlockNumber>;
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/// A type that gives us the ability to submit unresponsiveness offence reports.
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type ReportUnresponsiveness: ReportOffence<
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Self::AccountId,
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IdentificationTuple<Self>,
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UnresponsivenessOffence<IdentificationTuple<Self>>,
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>;
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/// A configuration for base priority of unsigned transactions.
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///
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/// This is exposed so that it can be tuned for particular runtime, when
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/// multiple pallets send unsigned transactions.
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type UnsignedPriority: Get<TransactionPriority>;
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/// Weight information for extrinsics in this pallet.
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type WeightInfo: WeightInfo;
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}
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#[pallet::event]
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#[pallet::generate_deposit(pub(super) fn deposit_event)]
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#[pallet::metadata(T::AuthorityId = "AuthorityId", Vec<IdentificationTuple<T>> = "Vec<IdentificationTuple>")]
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pub enum Event<T: Config> {
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/// A new heartbeat was received from `AuthorityId` \[authority_id\]
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HeartbeatReceived(T::AuthorityId),
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/// At the end of the session, no offence was committed.
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AllGood,
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/// At the end of the session, at least one validator was found to be \[offline\].
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SomeOffline(Vec<IdentificationTuple<T>>),
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}
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#[pallet::error]
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pub enum Error<T> {
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/// Non existent public key.
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InvalidKey,
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/// Duplicated heartbeat.
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DuplicatedHeartbeat,
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}
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/// The block number after which it's ok to send heartbeats in the current
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/// session.
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///
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/// At the beginning of each session we set this to a value that should fall
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/// roughly in the middle of the session duration. The idea is to first wait for
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/// the validators to produce a block in the current session, so that the
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/// heartbeat later on will not be necessary.
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///
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/// This value will only be used as a fallback if we fail to get a proper session
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/// progress estimate from `NextSessionRotation`, as those estimates should be
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/// more accurate then the value we calculate for `HeartbeatAfter`.
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#[pallet::storage]
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#[pallet::getter(fn heartbeat_after)]
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pub(crate) type HeartbeatAfter<T: Config> = StorageValue<_, T::BlockNumber, ValueQuery>;
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/// The current set of keys that may issue a heartbeat.
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#[pallet::storage]
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#[pallet::getter(fn keys)]
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pub(crate) type Keys<T: Config> = StorageValue<_, Vec<T::AuthorityId>, ValueQuery>;
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/// For each session index, we keep a mapping of `AuthIndex` to
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/// `offchain::OpaqueNetworkState`.
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#[pallet::storage]
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#[pallet::getter(fn received_heartbeats)]
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pub(crate) type ReceivedHeartbeats<T> = StorageDoubleMap<
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_,
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Twox64Concat,
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SessionIndex,
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Twox64Concat,
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AuthIndex,
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Vec<u8>,
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>;
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/// For each session index, we keep a mapping of `ValidatorId<T>` to the
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/// number of blocks authored by the given authority.
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#[pallet::storage]
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#[pallet::getter(fn authored_blocks)]
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pub(crate) type AuthoredBlocks<T: Config> = StorageDoubleMap<
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_,
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Twox64Concat,
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SessionIndex,
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Twox64Concat,
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ValidatorId<T>,
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u32,
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ValueQuery,
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>;
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#[pallet::genesis_config]
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pub struct GenesisConfig<T: Config> {
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pub keys: Vec<T::AuthorityId>,
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}
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#[cfg(feature = "std")]
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impl<T: Config> Default for GenesisConfig<T> {
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fn default() -> Self {
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GenesisConfig {
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keys: Default::default(),
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}
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}
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}
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#[pallet::genesis_build]
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impl<T: Config> GenesisBuild<T> for GenesisConfig<T> {
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fn build(&self) {
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Pallet::<T>::initialize_keys(&self.keys);
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}
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}
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#[pallet::call]
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impl<T: Config> Pallet<T> {
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/// # <weight>
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/// - Complexity: `O(K + E)` where K is length of `Keys` (heartbeat.validators_len)
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/// and E is length of `heartbeat.network_state.external_address`
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/// - `O(K)`: decoding of length `K`
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/// - `O(E)`: decoding/encoding of length `E`
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/// - DbReads: pallet_session `Validators`, pallet_session `CurrentIndex`, `Keys`,
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/// `ReceivedHeartbeats`
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/// - DbWrites: `ReceivedHeartbeats`
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/// # </weight>
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// NOTE: the weight includes the cost of validate_unsigned as it is part of the cost to
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// import block with such an extrinsic.
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#[pallet::weight(<T as Config>::WeightInfo::validate_unsigned_and_then_heartbeat(
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heartbeat.validators_len as u32,
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heartbeat.network_state.external_addresses.len() as u32,
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))]
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pub fn heartbeat(
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origin: OriginFor<T>,
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heartbeat: Heartbeat<T::BlockNumber>,
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// since signature verification is done in `validate_unsigned`
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// we can skip doing it here again.
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_signature: <T::AuthorityId as RuntimeAppPublic>::Signature,
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) -> DispatchResult {
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ensure_none(origin)?;
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let current_session = T::ValidatorSet::session_index();
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let exists = ReceivedHeartbeats::<T>::contains_key(
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¤t_session,
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&heartbeat.authority_index
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);
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let keys = Keys::<T>::get();
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let public = keys.get(heartbeat.authority_index as usize);
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if let (false, Some(public)) = (exists, public) {
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Self::deposit_event(Event::<T>::HeartbeatReceived(public.clone()));
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let network_state = heartbeat.network_state.encode();
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ReceivedHeartbeats::<T>::insert(
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¤t_session,
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&heartbeat.authority_index,
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&network_state
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);
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Ok(())
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} else if exists {
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Err(Error::<T>::DuplicatedHeartbeat)?
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} else {
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Err(Error::<T>::InvalidKey)?
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}
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}
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}
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#[pallet::hooks]
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impl<T: Config> Hooks<BlockNumberFor<T>> for Pallet<T> {
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fn offchain_worker(now: BlockNumberFor<T>) {
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// Only send messages if we are a potential validator.
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if sp_io::offchain::is_validator() {
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for res in Self::send_heartbeats(now).into_iter().flatten() {
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if let Err(e) = res {
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log::debug!(
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target: "runtime::im-online",
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"Skipping heartbeat at {:?}: {:?}",
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now,
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e,
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)
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}
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}
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} else {
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log::trace!(
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target: "runtime::im-online",
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"Skipping heartbeat at {:?}. Not a validator.",
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now,
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)
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}
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}
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}
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/// Invalid transaction custom error. Returned when validators_len field in heartbeat is incorrect.
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pub(crate) const INVALID_VALIDATORS_LEN: u8 = 10;
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#[pallet::validate_unsigned]
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impl<T: Config> ValidateUnsigned for Pallet<T> {
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type Call = Call<T>;
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fn validate_unsigned(_source: TransactionSource, call: &Self::Call) -> TransactionValidity {
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if let Call::heartbeat(heartbeat, signature) = call {
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if <Pallet<T>>::is_online(heartbeat.authority_index) {
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// we already received a heartbeat for this authority
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return InvalidTransaction::Stale.into();
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}
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// check if session index from heartbeat is recent
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let current_session = T::ValidatorSet::session_index();
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if heartbeat.session_index != current_session {
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return InvalidTransaction::Stale.into();
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}
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// verify that the incoming (unverified) pubkey is actually an authority id
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let keys = Keys::<T>::get();
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if keys.len() as u32 != heartbeat.validators_len {
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return InvalidTransaction::Custom(INVALID_VALIDATORS_LEN).into();
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}
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let authority_id = match keys.get(heartbeat.authority_index as usize) {
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Some(id) => id,
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None => return InvalidTransaction::BadProof.into(),
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};
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// check signature (this is expensive so we do it last).
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let signature_valid = heartbeat.using_encoded(|encoded_heartbeat| {
|
|
authority_id.verify(&encoded_heartbeat, &signature)
|
|
});
|
|
|
|
if !signature_valid {
|
|
return InvalidTransaction::BadProof.into();
|
|
}
|
|
|
|
ValidTransaction::with_tag_prefix("ImOnline")
|
|
.priority(T::UnsignedPriority::get())
|
|
.and_provides((current_session, authority_id))
|
|
.longevity(
|
|
TryInto::<u64>::try_into(
|
|
T::NextSessionRotation::average_session_length() / 2u32.into(),
|
|
)
|
|
.unwrap_or(64_u64),
|
|
)
|
|
.propagate(true)
|
|
.build()
|
|
} else {
|
|
InvalidTransaction::Call.into()
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Keep track of number of authored blocks per authority, uncles are counted as
|
|
/// well since they're a valid proof of being online.
|
|
impl<
|
|
T: Config + pallet_authorship::Config,
|
|
> pallet_authorship::EventHandler<ValidatorId<T>, T::BlockNumber> for Pallet<T>
|
|
{
|
|
fn note_author(author: ValidatorId<T>) {
|
|
Self::note_authorship(author);
|
|
}
|
|
|
|
fn note_uncle(author: ValidatorId<T>, _age: T::BlockNumber) {
|
|
Self::note_authorship(author);
|
|
}
|
|
}
|
|
|
|
impl<T: Config> Pallet<T> {
|
|
/// Returns `true` if a heartbeat has been received for the authority at
|
|
/// `authority_index` in the authorities series or if the authority has
|
|
/// authored at least one block, during the current session. Otherwise
|
|
/// `false`.
|
|
pub fn is_online(authority_index: AuthIndex) -> bool {
|
|
let current_validators = T::ValidatorSet::validators();
|
|
|
|
if authority_index >= current_validators.len() as u32 {
|
|
return false;
|
|
}
|
|
|
|
let authority = ¤t_validators[authority_index as usize];
|
|
|
|
Self::is_online_aux(authority_index, authority)
|
|
}
|
|
|
|
fn is_online_aux(authority_index: AuthIndex, authority: &ValidatorId<T>) -> bool {
|
|
let current_session = T::ValidatorSet::session_index();
|
|
|
|
ReceivedHeartbeats::<T>::contains_key(¤t_session, &authority_index) ||
|
|
AuthoredBlocks::<T>::get(
|
|
¤t_session,
|
|
authority,
|
|
) != 0
|
|
}
|
|
|
|
/// Returns `true` if a heartbeat has been received for the authority at `authority_index` in
|
|
/// the authorities series, during the current session. Otherwise `false`.
|
|
pub fn received_heartbeat_in_current_session(authority_index: AuthIndex) -> bool {
|
|
let current_session = T::ValidatorSet::session_index();
|
|
ReceivedHeartbeats::<T>::contains_key(¤t_session, &authority_index)
|
|
}
|
|
|
|
/// Note that the given authority has authored a block in the current session.
|
|
fn note_authorship(author: ValidatorId<T>) {
|
|
let current_session = T::ValidatorSet::session_index();
|
|
|
|
AuthoredBlocks::<T>::mutate(
|
|
¤t_session,
|
|
author,
|
|
|authored| *authored += 1,
|
|
);
|
|
}
|
|
|
|
pub(crate) fn send_heartbeats(
|
|
block_number: T::BlockNumber,
|
|
) -> OffchainResult<T, impl Iterator<Item = OffchainResult<T, ()>>> {
|
|
const START_HEARTBEAT_RANDOM_PERIOD: Permill = Permill::from_percent(10);
|
|
const START_HEARTBEAT_FINAL_PERIOD: Permill = Permill::from_percent(80);
|
|
|
|
// this should give us a residual probability of 1/SESSION_LENGTH of sending an heartbeat,
|
|
// i.e. all heartbeats spread uniformly, over most of the session. as the session progresses
|
|
// the probability of sending an heartbeat starts to increase exponentially.
|
|
let random_choice = |progress: Permill| {
|
|
// given session progress `p` and session length `l`
|
|
// the threshold formula is: p^6 + 1/l
|
|
let session_length = T::NextSessionRotation::average_session_length();
|
|
let residual = Permill::from_rational(1u32, session_length.saturated_into());
|
|
let threshold: Permill = progress.saturating_pow(6).saturating_add(residual);
|
|
|
|
let seed = sp_io::offchain::random_seed();
|
|
let random = <u32>::decode(&mut TrailingZeroInput::new(seed.as_ref()))
|
|
.expect("input is padded with zeroes; qed");
|
|
let random = Permill::from_parts(random % Permill::ACCURACY);
|
|
|
|
random <= threshold
|
|
};
|
|
|
|
let should_heartbeat = if let (Some(progress), _) =
|
|
T::NextSessionRotation::estimate_current_session_progress(block_number)
|
|
{
|
|
// we try to get an estimate of the current session progress first since it should
|
|
// provide more accurate results. we will start an early heartbeat period where we'll
|
|
// randomly pick whether to heartbeat. after 80% of the session has elapsed, if we
|
|
// haven't sent an heartbeat yet we'll send one unconditionally. the idea is to prevent
|
|
// all nodes from sending the heartbeats at the same block and causing a temporary (but
|
|
// deterministic) spike in transactions.
|
|
progress >= START_HEARTBEAT_FINAL_PERIOD
|
|
|| progress >= START_HEARTBEAT_RANDOM_PERIOD && random_choice(progress)
|
|
} else {
|
|
// otherwise we fallback to using the block number calculated at the beginning
|
|
// of the session that should roughly correspond to the middle of the session
|
|
let heartbeat_after = <HeartbeatAfter<T>>::get();
|
|
block_number >= heartbeat_after
|
|
};
|
|
|
|
if !should_heartbeat {
|
|
return Err(OffchainErr::TooEarly);
|
|
}
|
|
|
|
let session_index = T::ValidatorSet::session_index();
|
|
let validators_len = Keys::<T>::decode_len().unwrap_or_default() as u32;
|
|
|
|
Ok(
|
|
Self::local_authority_keys().map(move |(authority_index, key)| {
|
|
Self::send_single_heartbeat(
|
|
authority_index,
|
|
key,
|
|
session_index,
|
|
block_number,
|
|
validators_len,
|
|
)
|
|
}),
|
|
)
|
|
}
|
|
|
|
fn send_single_heartbeat(
|
|
authority_index: u32,
|
|
key: T::AuthorityId,
|
|
session_index: SessionIndex,
|
|
block_number: T::BlockNumber,
|
|
validators_len: u32,
|
|
) -> OffchainResult<T, ()> {
|
|
// A helper function to prepare heartbeat call.
|
|
let prepare_heartbeat = || -> OffchainResult<T, Call<T>> {
|
|
let network_state = sp_io::offchain::network_state()
|
|
.map_err(|_| OffchainErr::NetworkState)?;
|
|
let heartbeat_data = Heartbeat {
|
|
block_number,
|
|
network_state,
|
|
session_index,
|
|
authority_index,
|
|
validators_len,
|
|
};
|
|
|
|
let signature = key.sign(&heartbeat_data.encode()).ok_or(OffchainErr::FailedSigning)?;
|
|
|
|
Ok(Call::heartbeat(heartbeat_data, signature))
|
|
};
|
|
|
|
if Self::is_online(authority_index) {
|
|
return Err(OffchainErr::AlreadyOnline(authority_index));
|
|
}
|
|
|
|
// acquire lock for that authority at current heartbeat to make sure we don't
|
|
// send concurrent heartbeats.
|
|
Self::with_heartbeat_lock(
|
|
authority_index,
|
|
session_index,
|
|
block_number,
|
|
|| {
|
|
let call = prepare_heartbeat()?;
|
|
log::info!(
|
|
target: "runtime::im-online",
|
|
"[index: {:?}] Reporting im-online at block: {:?} (session: {:?}): {:?}",
|
|
authority_index,
|
|
block_number,
|
|
session_index,
|
|
call,
|
|
);
|
|
|
|
SubmitTransaction::<T, Call<T>>::submit_unsigned_transaction(call.into())
|
|
.map_err(|_| OffchainErr::SubmitTransaction)?;
|
|
|
|
Ok(())
|
|
},
|
|
)
|
|
}
|
|
|
|
fn local_authority_keys() -> impl Iterator<Item=(u32, T::AuthorityId)> {
|
|
// on-chain storage
|
|
//
|
|
// At index `idx`:
|
|
// 1. A (ImOnline) public key to be used by a validator at index `idx` to send im-online
|
|
// heartbeats.
|
|
let authorities = Keys::<T>::get();
|
|
|
|
// local keystore
|
|
//
|
|
// All `ImOnline` public (+private) keys currently in the local keystore.
|
|
let mut local_keys = T::AuthorityId::all();
|
|
|
|
local_keys.sort();
|
|
|
|
authorities.into_iter()
|
|
.enumerate()
|
|
.filter_map(move |(index, authority)| {
|
|
local_keys.binary_search(&authority)
|
|
.ok()
|
|
.map(|location| (index as u32, local_keys[location].clone()))
|
|
})
|
|
}
|
|
|
|
fn with_heartbeat_lock<R>(
|
|
authority_index: u32,
|
|
session_index: SessionIndex,
|
|
now: T::BlockNumber,
|
|
f: impl FnOnce() -> OffchainResult<T, R>,
|
|
) -> OffchainResult<T, R> {
|
|
let key = {
|
|
let mut key = DB_PREFIX.to_vec();
|
|
key.extend(authority_index.encode());
|
|
key
|
|
};
|
|
let storage = StorageValueRef::persistent(&key);
|
|
let res = storage.mutate(
|
|
|status: Result<Option<HeartbeatStatus<T::BlockNumber>>, StorageRetrievalError>| {
|
|
// Check if there is already a lock for that particular block.
|
|
// This means that the heartbeat has already been sent, and we are just waiting
|
|
// for it to be included. However if it doesn't get included for INCLUDE_THRESHOLD
|
|
// we will re-send it.
|
|
match status {
|
|
// we are still waiting for inclusion.
|
|
Ok(Some(status)) if status.is_recent(session_index, now) => {
|
|
Err(OffchainErr::WaitingForInclusion(status.sent_at))
|
|
},
|
|
// attempt to set new status
|
|
_ => Ok(HeartbeatStatus {
|
|
session_index,
|
|
sent_at: now,
|
|
}),
|
|
}
|
|
});
|
|
if let Err(MutateStorageError::ValueFunctionFailed(err)) = res {
|
|
return Err(err);
|
|
}
|
|
|
|
let mut new_status = res.map_err(|_| OffchainErr::FailedToAcquireLock)?;
|
|
|
|
// we got the lock, let's try to send the heartbeat.
|
|
let res = f();
|
|
|
|
// clear the lock in case we have failed to send transaction.
|
|
if res.is_err() {
|
|
new_status.sent_at = 0u32.into();
|
|
storage.set(&new_status);
|
|
}
|
|
|
|
res
|
|
}
|
|
|
|
fn initialize_keys(keys: &[T::AuthorityId]) {
|
|
if !keys.is_empty() {
|
|
assert!(Keys::<T>::get().is_empty(), "Keys are already initialized!");
|
|
Keys::<T>::put(keys);
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
fn set_keys(keys: Vec<T::AuthorityId>) {
|
|
Keys::<T>::put(&keys)
|
|
}
|
|
}
|
|
|
|
impl<T: Config> sp_runtime::BoundToRuntimeAppPublic for Pallet<T> {
|
|
type Public = T::AuthorityId;
|
|
}
|
|
|
|
impl<T: Config> OneSessionHandler<T::AccountId> for Pallet<T> {
|
|
type Key = T::AuthorityId;
|
|
|
|
fn on_genesis_session<'a, I: 'a>(validators: I)
|
|
where I: Iterator<Item=(&'a T::AccountId, T::AuthorityId)>
|
|
{
|
|
let keys = validators.map(|x| x.1).collect::<Vec<_>>();
|
|
Self::initialize_keys(&keys);
|
|
}
|
|
|
|
fn on_new_session<'a, I: 'a>(_changed: bool, validators: I, _queued_validators: I)
|
|
where I: Iterator<Item=(&'a T::AccountId, T::AuthorityId)>
|
|
{
|
|
// Tell the offchain worker to start making the next session's heartbeats.
|
|
// Since we consider producing blocks as being online,
|
|
// the heartbeat is deferred a bit to prevent spamming.
|
|
let block_number = <frame_system::Pallet<T>>::block_number();
|
|
let half_session = T::NextSessionRotation::average_session_length() / 2u32.into();
|
|
<HeartbeatAfter<T>>::put(block_number + half_session);
|
|
|
|
// Remember who the authorities are for the new session.
|
|
Keys::<T>::put(validators.map(|x| x.1).collect::<Vec<_>>());
|
|
}
|
|
|
|
fn on_before_session_ending() {
|
|
let session_index = T::ValidatorSet::session_index();
|
|
let keys = Keys::<T>::get();
|
|
let current_validators = T::ValidatorSet::validators();
|
|
|
|
let offenders = current_validators.into_iter().enumerate()
|
|
.filter(|(index, id)|
|
|
!Self::is_online_aux(*index as u32, id)
|
|
).filter_map(|(_, id)|
|
|
<T::ValidatorSet as ValidatorSetWithIdentification<T::AccountId>>::IdentificationOf::convert(
|
|
id.clone()
|
|
).map(|full_id| (id, full_id))
|
|
).collect::<Vec<IdentificationTuple<T>>>();
|
|
|
|
// Remove all received heartbeats and number of authored blocks from the
|
|
// current session, they have already been processed and won't be needed
|
|
// anymore.
|
|
ReceivedHeartbeats::<T>::remove_prefix(&T::ValidatorSet::session_index(), None);
|
|
AuthoredBlocks::<T>::remove_prefix(&T::ValidatorSet::session_index(), None);
|
|
|
|
if offenders.is_empty() {
|
|
Self::deposit_event(Event::<T>::AllGood);
|
|
} else {
|
|
Self::deposit_event(Event::<T>::SomeOffline(offenders.clone()));
|
|
|
|
let validator_set_count = keys.len() as u32;
|
|
let offence = UnresponsivenessOffence { session_index, validator_set_count, offenders };
|
|
if let Err(e) = T::ReportUnresponsiveness::report_offence(vec![], offence) {
|
|
sp_runtime::print(e);
|
|
}
|
|
}
|
|
}
|
|
|
|
fn on_disabled(_i: usize) {
|
|
// ignore
|
|
}
|
|
}
|
|
|
|
/// An offence that is filed if a validator didn't send a heartbeat message.
|
|
#[derive(RuntimeDebug)]
|
|
#[cfg_attr(feature = "std", derive(Clone, PartialEq, Eq))]
|
|
pub struct UnresponsivenessOffence<Offender> {
|
|
/// The current session index in which we report the unresponsive validators.
|
|
///
|
|
/// It acts as a time measure for unresponsiveness reports and effectively will always point
|
|
/// at the end of the session.
|
|
pub session_index: SessionIndex,
|
|
/// The size of the validator set in current session/era.
|
|
pub validator_set_count: u32,
|
|
/// Authorities that were unresponsive during the current era.
|
|
pub offenders: Vec<Offender>,
|
|
}
|
|
|
|
impl<Offender: Clone> Offence<Offender> for UnresponsivenessOffence<Offender> {
|
|
const ID: Kind = *b"im-online:offlin";
|
|
type TimeSlot = SessionIndex;
|
|
|
|
fn offenders(&self) -> Vec<Offender> {
|
|
self.offenders.clone()
|
|
}
|
|
|
|
fn session_index(&self) -> SessionIndex {
|
|
self.session_index
|
|
}
|
|
|
|
fn validator_set_count(&self) -> u32 {
|
|
self.validator_set_count
|
|
}
|
|
|
|
fn time_slot(&self) -> Self::TimeSlot {
|
|
self.session_index
|
|
}
|
|
|
|
fn slash_fraction(offenders: u32, validator_set_count: u32) -> Perbill {
|
|
// the formula is min((3 * (k - (n / 10 + 1))) / n, 1) * 0.07
|
|
// basically, 10% can be offline with no slash, but after that, it linearly climbs up to 7%
|
|
// when 13/30 are offline (around 5% when 1/3 are offline).
|
|
if let Some(threshold) = offenders.checked_sub(validator_set_count / 10 + 1) {
|
|
let x = Perbill::from_rational(3 * threshold, validator_set_count);
|
|
x.saturating_mul(Perbill::from_percent(7))
|
|
} else {
|
|
Perbill::default()
|
|
}
|
|
}
|
|
}
|