mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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68390d4085
* Init `RuntimeLogger` automatically for each runtime api call This pr change the runtime api in such a way to always and automatically enable the `RuntimeLogger`. This enables the user to use `log` or `tracing` from inside the runtime to create log messages. As logging introduces some extra code and especially increases the size of the wasm blob. It is advised to disable all logging completely with `sp-api/disable-logging` when doing the wasm builds for the on-chain wasm runtime. Besides these changes, the pr also brings most of the logging found in frame to the same format "runtime::*". * Update frame/im-online/src/lib.rs Co-authored-by: Guillaume Thiolliere <gui.thiolliere@gmail.com> * Update test-utils/runtime/Cargo.toml * Fix test * Don't use tracing in the runtime, as we don't support it :D * Fixes Co-authored-by: Guillaume Thiolliere <gui.thiolliere@gmail.com>
798 lines
26 KiB
Rust
798 lines
26 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 Module
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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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//! - [`im_online::Config`](./trait.Config.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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//! ## 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::Module<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::StorageValueRef,
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RuntimeDebug,
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traits::{Convert, Member, Saturating, AtLeast32BitUnsigned}, Perbill,
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transaction_validity::{
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TransactionValidity, ValidTransaction, InvalidTransaction, TransactionSource,
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TransactionPriority,
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},
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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::{
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decl_module, decl_event, decl_storage, Parameter, decl_error,
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traits::{Get, ValidatorSet, ValidatorSetWithIdentification, OneSessionHandler},
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};
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use frame_system::ensure_none;
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use frame_system::offchain::{
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SendTransactionTypes,
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SubmitTransaction,
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};
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pub use weights::WeightInfo;
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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(BlockNumber),
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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(ref block) =>
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write!(fmt, "Too early to send heartbeat, next expected at {:?}", block),
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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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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;
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/// The overarching event type.
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type Event: From<Event<Self>> + Into<<Self as frame_system::Config>::Event>;
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/// An expected duration of the session.
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///
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/// This parameter is used to determine the longevity of `heartbeat` transaction
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/// and a rough time when we should start considering sending heartbeats,
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/// since the workers avoids sending them at the very beginning of the session, assuming
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/// there is a chance the authority will produce a block and they won't be necessary.
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type SessionDuration: Get<Self::BlockNumber>;
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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 type that gives us the ability to submit unresponsiveness offence reports.
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type ReportUnresponsiveness:
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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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decl_event!(
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pub enum Event<T> where
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<T as Config>::AuthorityId,
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IdentificationTuple = IdentificationTuple<T>,
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{
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/// A new heartbeat was received from `AuthorityId` \[authority_id\]
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HeartbeatReceived(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>),
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}
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);
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decl_storage! {
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trait Store for Module<T: Config> as ImOnline {
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/// The block number after which it's ok to send heartbeats in current session.
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///
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/// At the beginning of each session we set this to a value that should
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/// fall roughly in the middle of the session duration.
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/// The idea is to first wait for the validators to produce a block
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/// in the current session, so that the heartbeat later on will not be necessary.
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HeartbeatAfter get(fn heartbeat_after): T::BlockNumber;
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/// The current set of keys that may issue a heartbeat.
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Keys get(fn keys): Vec<T::AuthorityId>;
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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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ReceivedHeartbeats get(fn received_heartbeats):
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double_map hasher(twox_64_concat) SessionIndex, hasher(twox_64_concat) AuthIndex
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=> Option<Vec<u8>>;
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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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AuthoredBlocks get(fn authored_blocks):
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double_map hasher(twox_64_concat) SessionIndex, hasher(twox_64_concat) ValidatorId<T>
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=> u32;
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}
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add_extra_genesis {
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config(keys): Vec<T::AuthorityId>;
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build(|config| Module::<T>::initialize_keys(&config.keys))
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}
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}
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decl_error! {
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/// Error for the im-online module.
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pub enum Error for Module<T: Config> {
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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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}
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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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type Error = Error<T>;
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fn deposit_event() = default;
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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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#[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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fn heartbeat(
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origin,
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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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) {
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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>::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>::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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} 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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// Runs after every block.
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fn offchain_worker(now: T::BlockNumber) {
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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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}
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type OffchainResult<T, A> = Result<A, OffchainErr<<T as frame_system::Config>::BlockNumber>>;
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/// Keep track of number of authored blocks per authority, uncles are counted as
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/// well since they're a valid proof of being online.
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impl<
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T: Config + pallet_authorship::Config,
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> pallet_authorship::EventHandler<ValidatorId<T>, T::BlockNumber> for Module<T>
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{
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fn note_author(author: ValidatorId<T>) {
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Self::note_authorship(author);
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}
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fn note_uncle(author: ValidatorId<T>, _age: T::BlockNumber) {
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Self::note_authorship(author);
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}
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}
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impl<T: Config> Module<T> {
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/// Returns `true` if a heartbeat has been received for the authority at
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/// `authority_index` in the authorities series or if the authority has
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/// authored at least one block, during the current session. Otherwise
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/// `false`.
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pub fn is_online(authority_index: AuthIndex) -> bool {
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let current_validators = T::ValidatorSet::validators();
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if authority_index >= current_validators.len() as u32 {
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return false;
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}
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let authority = ¤t_validators[authority_index as usize];
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Self::is_online_aux(authority_index, authority)
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}
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fn is_online_aux(authority_index: AuthIndex, authority: &ValidatorId<T>) -> bool {
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let current_session = T::ValidatorSet::session_index();
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<ReceivedHeartbeats>::contains_key(¤t_session, &authority_index) ||
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<AuthoredBlocks<T>>::get(
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¤t_session,
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authority,
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) != 0
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}
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/// Returns `true` if a heartbeat has been received for the authority at `authority_index` in
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/// the authorities series, during the current session. Otherwise `false`.
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pub fn received_heartbeat_in_current_session(authority_index: AuthIndex) -> bool {
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let current_session = T::ValidatorSet::session_index();
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<ReceivedHeartbeats>::contains_key(¤t_session, &authority_index)
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}
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/// Note that the given authority has authored a block in the current session.
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fn note_authorship(author: ValidatorId<T>) {
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let current_session = T::ValidatorSet::session_index();
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<AuthoredBlocks<T>>::mutate(
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¤t_session,
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author,
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|authored| *authored += 1,
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);
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}
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pub(crate) fn send_heartbeats(block_number: T::BlockNumber)
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-> OffchainResult<T, impl Iterator<Item=OffchainResult<T, ()>>>
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{
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let heartbeat_after = <HeartbeatAfter<T>>::get();
|
|
if block_number < heartbeat_after {
|
|
return Err(OffchainErr::TooEarly(heartbeat_after))
|
|
}
|
|
|
|
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: Option<Option<HeartbeatStatus<T::BlockNumber>>>| {
|
|
// 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.
|
|
Some(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,
|
|
}),
|
|
}
|
|
})?;
|
|
|
|
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 Module<T> {
|
|
type Public = T::AuthorityId;
|
|
}
|
|
|
|
impl<T: Config> OneSessionHandler<T::AccountId> for Module<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::Module<T>>::block_number();
|
|
let half_session = T::SessionDuration::get() / 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>::remove_prefix(&T::ValidatorSet::session_index());
|
|
<AuthoredBlocks<T>>::remove_prefix(&T::ValidatorSet::session_index());
|
|
|
|
if offenders.is_empty() {
|
|
Self::deposit_event(RawEvent::AllGood);
|
|
} else {
|
|
Self::deposit_event(RawEvent::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
|
|
}
|
|
}
|
|
|
|
/// Invalid transaction custom error. Returned when validators_len field in heartbeat is incorrect.
|
|
const INVALID_VALIDATORS_LEN: u8 = 10;
|
|
|
|
impl<T: Config> frame_support::unsigned::ValidateUnsigned for Module<T> {
|
|
type Call = Call<T>;
|
|
|
|
fn validate_unsigned(
|
|
_source: TransactionSource,
|
|
call: &Self::Call,
|
|
) -> TransactionValidity {
|
|
if let Call::heartbeat(heartbeat, signature) = call {
|
|
if <Module<T>>::is_online(heartbeat.authority_index) {
|
|
// we already received a heartbeat for this authority
|
|
return InvalidTransaction::Stale.into();
|
|
}
|
|
|
|
// check if session index from heartbeat is recent
|
|
let current_session = T::ValidatorSet::session_index();
|
|
if heartbeat.session_index != current_session {
|
|
return InvalidTransaction::Stale.into();
|
|
}
|
|
|
|
// verify that the incoming (unverified) pubkey is actually an authority id
|
|
let keys = Keys::<T>::get();
|
|
if keys.len() as u32 != heartbeat.validators_len {
|
|
return InvalidTransaction::Custom(INVALID_VALIDATORS_LEN).into();
|
|
}
|
|
let authority_id = match keys.get(heartbeat.authority_index as usize) {
|
|
Some(id) => id,
|
|
None => return InvalidTransaction::BadProof.into(),
|
|
};
|
|
|
|
// check signature (this is expensive so we do it last).
|
|
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::SessionDuration::get() / 2u32.into()
|
|
).unwrap_or(64_u64))
|
|
.propagate(true)
|
|
.build()
|
|
} else {
|
|
InvalidTransaction::Call.into()
|
|
}
|
|
}
|
|
}
|
|
|
|
/// 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_approximation(3 * threshold, validator_set_count);
|
|
x.saturating_mul(Perbill::from_percent(7))
|
|
} else {
|
|
Perbill::default()
|
|
}
|
|
}
|
|
}
|