mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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8778ca7dc8
* Rename: Phase 1. * Unify codec. * Fixing: Phase 2 * Fixing: Phase 3. * Fixing: Phase 4. * Fixing: Phase 5. * Fixing: Phase 6. * Fixing: Phase 7. * Fixing: Phase 8. Tests * Fixing: Phase 9. Tests!!! * Fixing: Phase 10. Moar tests! * Finally done! * More fixes. * Rename primitives:: to sp_core:: * Apply renames in finality-grandpa. * Fix benches. * Fix benches 2. * Revert node-template. * Fix frame-system in our modules.
957 lines
30 KiB
Rust
957 lines
30 KiB
Rust
// Copyright 2018-2019 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Substrate is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Substrate. If not, see <http://www.gnu.org/licenses/>.
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//! Integration of the GRANDPA finality gadget into substrate.
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//!
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//! This crate is unstable and the API and usage may change.
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//!
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//! This crate provides a long-running future that produces finality notifications.
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//!
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//! # Usage
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//!
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//! First, create a block-import wrapper with the `block_import` function. The
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//! GRANDPA worker needs to be linked together with this block import object, so
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//! a `LinkHalf` is returned as well. All blocks imported (from network or
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//! consensus or otherwise) must pass through this wrapper, otherwise consensus
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//! is likely to break in unexpected ways.
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//!
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//! Next, use the `LinkHalf` and a local configuration to `run_grandpa_voter`.
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//! This requires a `Network` implementation. The returned future should be
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//! driven to completion and will finalize blocks in the background.
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//!
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//! # Changing authority sets
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//!
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//! The rough idea behind changing authority sets in GRANDPA is that at some point,
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//! we obtain agreement for some maximum block height that the current set can
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//! finalize, and once a block with that height is finalized the next set will
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//! pick up finalization from there.
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//!
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//! Technically speaking, this would be implemented as a voting rule which says,
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//! "if there is a signal for a change in N blocks in block B, only vote on
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//! chains with length NUM(B) + N if they contain B". This conditional-inclusion
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//! logic is complex to compute because it requires looking arbitrarily far
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//! back in the chain.
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//!
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//! Instead, we keep track of a list of all signals we've seen so far (across
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//! all forks), sorted ascending by the block number they would be applied at.
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//! We never vote on chains with number higher than the earliest handoff block
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//! number (this is num(signal) + N). When finalizing a block, we either apply
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//! or prune any signaled changes based on whether the signaling block is
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//! included in the newly-finalized chain.
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use futures::prelude::*;
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use log::{debug, error, info};
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use futures::sync::mpsc;
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use sc_client_api::{BlockchainEvents, CallExecutor, backend::Backend, ExecutionStrategy};
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use sp_blockchain::{HeaderBackend, Error as ClientError};
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use sc_client::Client;
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use parity_scale_codec::{Decode, Encode};
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use sp_runtime::generic::BlockId;
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use sp_runtime::traits::{NumberFor, Block as BlockT, DigestFor, Zero};
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use sc_keystore::KeyStorePtr;
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use sp_inherents::InherentDataProviders;
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use sp_consensus::SelectChain;
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use sp_core::{H256, Blake2Hasher, Pair};
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use sc_telemetry::{telemetry, CONSENSUS_INFO, CONSENSUS_DEBUG, CONSENSUS_WARN};
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use serde_json;
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use sp_finality_tracker;
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use finality_grandpa::Error as GrandpaError;
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use finality_grandpa::{voter, BlockNumberOps, voter_set::VoterSet};
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use std::{fmt, io};
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use std::sync::Arc;
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use std::time::Duration;
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mod authorities;
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mod aux_schema;
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mod communication;
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mod consensus_changes;
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mod environment;
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mod finality_proof;
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mod import;
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mod justification;
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mod light_import;
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mod observer;
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mod until_imported;
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mod voting_rule;
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pub use sc_network_gossip::Network;
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pub use finality_proof::FinalityProofProvider;
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pub use justification::GrandpaJustification;
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pub use light_import::light_block_import;
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pub use observer::run_grandpa_observer;
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pub use voting_rule::{
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BeforeBestBlock, ThreeQuartersOfTheUnfinalizedChain, VotingRule, VotingRulesBuilder
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};
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use aux_schema::PersistentData;
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use environment::{Environment, VoterSetState};
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use import::GrandpaBlockImport;
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use until_imported::UntilGlobalMessageBlocksImported;
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use communication::NetworkBridge;
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use sp_finality_grandpa::{AuthorityList, AuthorityPair, AuthoritySignature, SetId};
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// Re-export these two because it's just so damn convenient.
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pub use sp_finality_grandpa::{AuthorityId, ScheduledChange};
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#[cfg(test)]
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mod tests;
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/// A GRANDPA message for a substrate chain.
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pub type Message<Block> = finality_grandpa::Message<<Block as BlockT>::Hash, NumberFor<Block>>;
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/// A signed message.
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pub type SignedMessage<Block> = finality_grandpa::SignedMessage<
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<Block as BlockT>::Hash,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// A primary propose message for this chain's block type.
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pub type PrimaryPropose<Block> = finality_grandpa::PrimaryPropose<<Block as BlockT>::Hash, NumberFor<Block>>;
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/// A prevote message for this chain's block type.
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pub type Prevote<Block> = finality_grandpa::Prevote<<Block as BlockT>::Hash, NumberFor<Block>>;
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/// A precommit message for this chain's block type.
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pub type Precommit<Block> = finality_grandpa::Precommit<<Block as BlockT>::Hash, NumberFor<Block>>;
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/// A catch up message for this chain's block type.
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pub type CatchUp<Block> = finality_grandpa::CatchUp<
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<Block as BlockT>::Hash,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// A commit message for this chain's block type.
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pub type Commit<Block> = finality_grandpa::Commit<
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<Block as BlockT>::Hash,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// A compact commit message for this chain's block type.
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pub type CompactCommit<Block> = finality_grandpa::CompactCommit<
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<Block as BlockT>::Hash,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// A global communication input stream for commits and catch up messages. Not
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/// exposed publicly, used internally to simplify types in the communication
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/// layer.
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type CommunicationIn<Block> = finality_grandpa::voter::CommunicationIn<
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<Block as BlockT>::Hash,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// Global communication input stream for commits and catch up messages, with
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/// the hash type not being derived from the block, useful for forcing the hash
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/// to some type (e.g. `H256`) when the compiler can't do the inference.
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type CommunicationInH<Block, H> = finality_grandpa::voter::CommunicationIn<
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H,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// A global communication sink for commits. Not exposed publicly, used
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/// internally to simplify types in the communication layer.
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type CommunicationOut<Block> = finality_grandpa::voter::CommunicationOut<
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<Block as BlockT>::Hash,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// Global communication sink for commits with the hash type not being derived
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/// from the block, useful for forcing the hash to some type (e.g. `H256`) when
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/// the compiler can't do the inference.
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type CommunicationOutH<Block, H> = finality_grandpa::voter::CommunicationOut<
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H,
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NumberFor<Block>,
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AuthoritySignature,
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AuthorityId,
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>;
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/// Configuration for the GRANDPA service.
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#[derive(Clone)]
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pub struct Config {
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/// The expected duration for a message to be gossiped across the network.
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pub gossip_duration: Duration,
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/// Justification generation period (in blocks). GRANDPA will try to generate justifications
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/// at least every justification_period blocks. There are some other events which might cause
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/// justification generation.
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pub justification_period: u32,
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/// Whether the GRANDPA observer protocol is live on the network and thereby
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/// a full-node not running as a validator is running the GRANDPA observer
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/// protocol (we will only issue catch-up requests to authorities when the
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/// observer protocol is enabled).
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pub observer_enabled: bool,
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/// Whether the node is running as an authority (i.e. running the full GRANDPA protocol).
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pub is_authority: bool,
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/// Some local identifier of the voter.
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pub name: Option<String>,
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/// The keystore that manages the keys of this node.
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pub keystore: Option<sc_keystore::KeyStorePtr>,
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}
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impl Config {
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fn name(&self) -> &str {
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self.name.as_ref().map(|s| s.as_str()).unwrap_or("<unknown>")
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}
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}
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/// Errors that can occur while voting in GRANDPA.
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#[derive(Debug)]
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pub enum Error {
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/// An error within grandpa.
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Grandpa(GrandpaError),
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/// A network error.
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Network(String),
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/// A blockchain error.
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Blockchain(String),
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/// Could not complete a round on disk.
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Client(ClientError),
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/// An invariant has been violated (e.g. not finalizing pending change blocks in-order)
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Safety(String),
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/// A timer failed to fire.
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Timer(io::Error),
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}
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impl From<GrandpaError> for Error {
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fn from(e: GrandpaError) -> Self {
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Error::Grandpa(e)
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}
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}
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impl From<ClientError> for Error {
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fn from(e: ClientError) -> Self {
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Error::Client(e)
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}
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}
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/// Something which can determine if a block is known.
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pub(crate) trait BlockStatus<Block: BlockT> {
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/// Return `Ok(Some(number))` or `Ok(None)` depending on whether the block
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/// is definitely known and has been imported.
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/// If an unexpected error occurs, return that.
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fn block_number(&self, hash: Block::Hash) -> Result<Option<NumberFor<Block>>, Error>;
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}
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impl<B, E, Block: BlockT<Hash=H256>, RA> BlockStatus<Block> for Arc<Client<B, E, Block, RA>> where
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B: Backend<Block, Blake2Hasher>,
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E: CallExecutor<Block, Blake2Hasher> + Send + Sync,
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RA: Send + Sync,
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NumberFor<Block>: BlockNumberOps,
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{
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fn block_number(&self, hash: Block::Hash) -> Result<Option<NumberFor<Block>>, Error> {
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self.block_number_from_id(&BlockId::Hash(hash))
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.map_err(|e| Error::Blockchain(format!("{:?}", e)))
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}
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}
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/// Something that one can ask to do a block sync request.
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pub(crate) trait BlockSyncRequester<Block: BlockT> {
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/// Notifies the sync service to try and sync the given block from the given
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/// peers.
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///
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/// If the given vector of peers is empty then the underlying implementation
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/// should make a best effort to fetch the block from any peers it is
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/// connected to (NOTE: this assumption will change in the future #3629).
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fn set_sync_fork_request(&self, peers: Vec<sc_network::PeerId>, hash: Block::Hash, number: NumberFor<Block>);
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}
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impl<Block> BlockSyncRequester<Block> for NetworkBridge<Block> where
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Block: BlockT,
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{
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fn set_sync_fork_request(&self, peers: Vec<sc_network::PeerId>, hash: Block::Hash, number: NumberFor<Block>) {
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NetworkBridge::set_sync_fork_request(self, peers, hash, number)
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}
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}
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/// A new authority set along with the canonical block it changed at.
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#[derive(Debug)]
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pub(crate) struct NewAuthoritySet<H, N> {
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pub(crate) canon_number: N,
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pub(crate) canon_hash: H,
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pub(crate) set_id: SetId,
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pub(crate) authorities: AuthorityList,
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}
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/// Commands issued to the voter.
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#[derive(Debug)]
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pub(crate) enum VoterCommand<H, N> {
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/// Pause the voter for given reason.
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Pause(String),
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/// New authorities.
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ChangeAuthorities(NewAuthoritySet<H, N>)
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}
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impl<H, N> fmt::Display for VoterCommand<H, N> {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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match *self {
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VoterCommand::Pause(ref reason) => write!(f, "Pausing voter: {}", reason),
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VoterCommand::ChangeAuthorities(_) => write!(f, "Changing authorities"),
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}
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}
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}
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/// Signals either an early exit of a voter or an error.
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#[derive(Debug)]
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pub(crate) enum CommandOrError<H, N> {
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/// An error occurred.
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Error(Error),
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/// A command to the voter.
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VoterCommand(VoterCommand<H, N>),
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}
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impl<H, N> From<Error> for CommandOrError<H, N> {
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fn from(e: Error) -> Self {
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CommandOrError::Error(e)
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}
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}
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impl<H, N> From<ClientError> for CommandOrError<H, N> {
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fn from(e: ClientError) -> Self {
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CommandOrError::Error(Error::Client(e))
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}
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}
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impl<H, N> From<finality_grandpa::Error> for CommandOrError<H, N> {
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fn from(e: finality_grandpa::Error) -> Self {
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CommandOrError::Error(Error::from(e))
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}
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}
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impl<H, N> From<VoterCommand<H, N>> for CommandOrError<H, N> {
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fn from(e: VoterCommand<H, N>) -> Self {
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CommandOrError::VoterCommand(e)
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}
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}
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impl<H: fmt::Debug, N: fmt::Debug> ::std::error::Error for CommandOrError<H, N> { }
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impl<H, N> fmt::Display for CommandOrError<H, N> {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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match *self {
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CommandOrError::Error(ref e) => write!(f, "{:?}", e),
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CommandOrError::VoterCommand(ref cmd) => write!(f, "{}", cmd),
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}
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}
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}
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pub struct LinkHalf<B, E, Block: BlockT<Hash=H256>, RA, SC> {
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client: Arc<Client<B, E, Block, RA>>,
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select_chain: SC,
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persistent_data: PersistentData<Block>,
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voter_commands_rx: mpsc::UnboundedReceiver<VoterCommand<Block::Hash, NumberFor<Block>>>,
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}
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/// Provider for the Grandpa authority set configured on the genesis block.
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pub trait GenesisAuthoritySetProvider<Block: BlockT> {
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/// Get the authority set at the genesis block.
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fn get(&self) -> Result<AuthorityList, ClientError>;
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}
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impl<B, E, Block: BlockT<Hash=H256>, RA> GenesisAuthoritySetProvider<Block> for Client<B, E, Block, RA>
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where
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B: Backend<Block, Blake2Hasher> + Send + Sync + 'static,
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E: CallExecutor<Block, Blake2Hasher> + 'static + Clone + Send + Sync,
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RA: Send + Sync,
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{
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fn get(&self) -> Result<AuthorityList, ClientError> {
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// This implementation uses the Grandpa runtime API instead of reading directly from the
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// `GRANDPA_AUTHORITIES_KEY` as the data may have been migrated since the genesis block of
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// the chain, whereas the runtime API is backwards compatible.
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self.executor()
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.call(
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&BlockId::Number(Zero::zero()),
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"GrandpaApi_grandpa_authorities",
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&[],
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ExecutionStrategy::NativeElseWasm,
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None,
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)
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.and_then(|call_result| {
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Decode::decode(&mut &call_result[..])
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.map_err(|err| ClientError::CallResultDecode(
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"failed to decode GRANDPA authorities set proof".into(), err
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))
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})
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}
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}
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/// Make block importer and link half necessary to tie the background voter
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/// to it.
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pub fn block_import<B, E, Block: BlockT<Hash=H256>, RA, SC>(
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client: Arc<Client<B, E, Block, RA>>,
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genesis_authorities_provider: &dyn GenesisAuthoritySetProvider<Block>,
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select_chain: SC,
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) -> Result<(
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GrandpaBlockImport<B, E, Block, RA, SC>,
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LinkHalf<B, E, Block, RA, SC>
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), ClientError>
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where
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B: Backend<Block, Blake2Hasher> + 'static,
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E: CallExecutor<Block, Blake2Hasher> + 'static + Clone + Send + Sync,
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RA: Send + Sync,
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SC: SelectChain<Block>,
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{
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let chain_info = client.info();
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let genesis_hash = chain_info.chain.genesis_hash;
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let persistent_data = aux_schema::load_persistent(
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&*client,
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genesis_hash,
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<NumberFor<Block>>::zero(),
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|| {
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let authorities = genesis_authorities_provider.get()?;
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telemetry!(CONSENSUS_DEBUG; "afg.loading_authorities";
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"authorities_len" => ?authorities.len()
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);
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Ok(authorities)
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}
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)?;
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let (voter_commands_tx, voter_commands_rx) = mpsc::unbounded();
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Ok((
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GrandpaBlockImport::new(
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client.clone(),
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select_chain.clone(),
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persistent_data.authority_set.clone(),
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voter_commands_tx,
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persistent_data.consensus_changes.clone(),
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),
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LinkHalf {
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client,
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select_chain,
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persistent_data,
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voter_commands_rx,
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},
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))
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}
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fn global_communication<Block: BlockT<Hash=H256>, B, E, RA>(
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set_id: SetId,
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voters: &Arc<VoterSet<AuthorityId>>,
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client: &Arc<Client<B, E, Block, RA>>,
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network: &NetworkBridge<Block>,
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keystore: &Option<KeyStorePtr>,
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) -> (
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impl Stream<
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Item = CommunicationInH<Block, H256>,
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Error = CommandOrError<H256, NumberFor<Block>>,
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>,
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impl Sink<
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SinkItem = CommunicationOutH<Block, H256>,
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SinkError = CommandOrError<H256, NumberFor<Block>>,
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>,
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) where
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B: Backend<Block, Blake2Hasher>,
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E: CallExecutor<Block, Blake2Hasher> + Send + Sync,
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RA: Send + Sync,
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NumberFor<Block>: BlockNumberOps,
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{
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let is_voter = is_voter(voters, keystore).is_some();
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// verification stream
|
|
let (global_in, global_out) = network.global_communication(
|
|
communication::SetId(set_id),
|
|
voters.clone(),
|
|
is_voter,
|
|
);
|
|
|
|
// block commit and catch up messages until relevant blocks are imported.
|
|
let global_in = UntilGlobalMessageBlocksImported::new(
|
|
client.import_notification_stream(),
|
|
network.clone(),
|
|
client.clone(),
|
|
global_in,
|
|
"global",
|
|
);
|
|
|
|
let global_in = global_in.map_err(CommandOrError::from);
|
|
let global_out = global_out.sink_map_err(CommandOrError::from);
|
|
|
|
(global_in, global_out)
|
|
}
|
|
|
|
/// Register the finality tracker inherent data provider (which is used by
|
|
/// GRANDPA), if not registered already.
|
|
fn register_finality_tracker_inherent_data_provider<B, E, Block: BlockT<Hash=H256>, RA>(
|
|
client: Arc<Client<B, E, Block, RA>>,
|
|
inherent_data_providers: &InherentDataProviders,
|
|
) -> Result<(), sp_consensus::Error> where
|
|
B: Backend<Block, Blake2Hasher> + 'static,
|
|
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
|
|
RA: Send + Sync + 'static,
|
|
{
|
|
if !inherent_data_providers.has_provider(&sp_finality_tracker::INHERENT_IDENTIFIER) {
|
|
inherent_data_providers
|
|
.register_provider(sp_finality_tracker::InherentDataProvider::new(move || {
|
|
#[allow(deprecated)]
|
|
{
|
|
let info = client.info().chain;
|
|
telemetry!(CONSENSUS_INFO; "afg.finalized";
|
|
"finalized_number" => ?info.finalized_number,
|
|
"finalized_hash" => ?info.finalized_hash,
|
|
);
|
|
Ok(info.finalized_number)
|
|
}
|
|
}))
|
|
.map_err(|err| sp_consensus::Error::InherentData(err.into()))
|
|
} else {
|
|
Ok(())
|
|
}
|
|
}
|
|
|
|
/// Parameters used to run Grandpa.
|
|
pub struct GrandpaParams<B, E, Block: BlockT<Hash=H256>, N, RA, SC, VR, X, Sp> {
|
|
/// Configuration for the GRANDPA service.
|
|
pub config: Config,
|
|
/// A link to the block import worker.
|
|
pub link: LinkHalf<B, E, Block, RA, SC>,
|
|
/// The Network instance.
|
|
pub network: N,
|
|
/// The inherent data providers.
|
|
pub inherent_data_providers: InherentDataProviders,
|
|
/// Handle to a future that will resolve on exit.
|
|
pub on_exit: X,
|
|
/// If supplied, can be used to hook on telemetry connection established events.
|
|
pub telemetry_on_connect: Option<mpsc::UnboundedReceiver<()>>,
|
|
/// A voting rule used to potentially restrict target votes.
|
|
pub voting_rule: VR,
|
|
/// How to spawn background tasks.
|
|
pub executor: Sp,
|
|
}
|
|
|
|
/// Run a GRANDPA voter as a task. Provide configuration and a link to a
|
|
/// block import worker that has already been instantiated with `block_import`.
|
|
pub fn run_grandpa_voter<B, E, Block: BlockT<Hash=H256>, N, RA, SC, VR, X, Sp>(
|
|
grandpa_params: GrandpaParams<B, E, Block, N, RA, SC, VR, X, Sp>,
|
|
) -> sp_blockchain::Result<impl Future<Item=(),Error=()> + Send + 'static> where
|
|
Block::Hash: Ord,
|
|
B: Backend<Block, Blake2Hasher> + 'static,
|
|
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
|
|
N: Network<Block> + Send + Clone + 'static,
|
|
SC: SelectChain<Block> + 'static,
|
|
VR: VotingRule<Block, Client<B, E, Block, RA>> + Clone + 'static,
|
|
NumberFor<Block>: BlockNumberOps,
|
|
DigestFor<Block>: Encode,
|
|
RA: Send + Sync + 'static,
|
|
X: futures03::Future<Output=()> + Clone + Send + Unpin + 'static,
|
|
Sp: futures03::task::Spawn + 'static,
|
|
{
|
|
let GrandpaParams {
|
|
config,
|
|
link,
|
|
network,
|
|
inherent_data_providers,
|
|
on_exit,
|
|
telemetry_on_connect,
|
|
voting_rule,
|
|
executor,
|
|
} = grandpa_params;
|
|
|
|
let LinkHalf {
|
|
client,
|
|
select_chain,
|
|
persistent_data,
|
|
voter_commands_rx,
|
|
} = link;
|
|
|
|
let network = NetworkBridge::new(
|
|
network,
|
|
config.clone(),
|
|
persistent_data.set_state.clone(),
|
|
&executor,
|
|
on_exit.clone(),
|
|
);
|
|
|
|
register_finality_tracker_inherent_data_provider(client.clone(), &inherent_data_providers)?;
|
|
|
|
let conf = config.clone();
|
|
let telemetry_task = if let Some(telemetry_on_connect) = telemetry_on_connect {
|
|
let authorities = persistent_data.authority_set.clone();
|
|
let events = telemetry_on_connect
|
|
.for_each(move |_| {
|
|
let curr = authorities.current_authorities();
|
|
let mut auths = curr.voters().into_iter().map(|(p, _)| p);
|
|
let maybe_authority_id = authority_id(&mut auths, &conf.keystore)
|
|
.unwrap_or(Default::default());
|
|
|
|
telemetry!(CONSENSUS_INFO; "afg.authority_set";
|
|
"authority_id" => maybe_authority_id.to_string(),
|
|
"authority_set_id" => ?authorities.set_id(),
|
|
"authorities" => {
|
|
let authorities: Vec<String> = curr.voters()
|
|
.iter().map(|(id, _)| id.to_string()).collect();
|
|
serde_json::to_string(&authorities)
|
|
.expect("authorities is always at least an empty vector; elements are always of type string")
|
|
}
|
|
);
|
|
Ok(())
|
|
})
|
|
.then(|_| -> Result<(), ()> { Ok(()) });
|
|
futures::future::Either::A(events)
|
|
} else {
|
|
futures::future::Either::B(futures::future::empty())
|
|
};
|
|
|
|
let voter_work = VoterWork::new(
|
|
client,
|
|
config,
|
|
network,
|
|
select_chain,
|
|
voting_rule,
|
|
persistent_data,
|
|
voter_commands_rx,
|
|
);
|
|
|
|
let voter_work = voter_work
|
|
.map(|_| ())
|
|
.map_err(|e| {
|
|
error!("GRANDPA Voter failed: {:?}", e);
|
|
telemetry!(CONSENSUS_WARN; "afg.voter_failed"; "e" => ?e);
|
|
});
|
|
|
|
// Make sure that `telemetry_task` doesn't accidentally finish and kill grandpa.
|
|
let telemetry_task = telemetry_task
|
|
.then(|_| futures::future::empty::<(), ()>());
|
|
|
|
use futures03::{FutureExt, TryFutureExt};
|
|
|
|
Ok(voter_work.select(on_exit.map(Ok).compat()).select2(telemetry_task).then(|_| Ok(())))
|
|
}
|
|
|
|
/// Future that powers the voter.
|
|
#[must_use]
|
|
struct VoterWork<B, E, Block: BlockT, RA, SC, VR> {
|
|
voter: Box<dyn Future<Item = (), Error = CommandOrError<Block::Hash, NumberFor<Block>>> + Send>,
|
|
env: Arc<Environment<B, E, Block, RA, SC, VR>>,
|
|
voter_commands_rx: mpsc::UnboundedReceiver<VoterCommand<Block::Hash, NumberFor<Block>>>,
|
|
}
|
|
|
|
impl<B, E, Block, RA, SC, VR> VoterWork<B, E, Block, RA, SC, VR>
|
|
where
|
|
Block: BlockT<Hash=H256>,
|
|
NumberFor<Block>: BlockNumberOps,
|
|
RA: 'static + Send + Sync,
|
|
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
|
|
B: Backend<Block, Blake2Hasher> + 'static,
|
|
SC: SelectChain<Block> + 'static,
|
|
VR: VotingRule<Block, Client<B, E, Block, RA>> + Clone + 'static,
|
|
{
|
|
fn new(
|
|
client: Arc<Client<B, E, Block, RA>>,
|
|
config: Config,
|
|
network: NetworkBridge<Block>,
|
|
select_chain: SC,
|
|
voting_rule: VR,
|
|
persistent_data: PersistentData<Block>,
|
|
voter_commands_rx: mpsc::UnboundedReceiver<VoterCommand<Block::Hash, NumberFor<Block>>>,
|
|
) -> Self {
|
|
|
|
let voters = persistent_data.authority_set.current_authorities();
|
|
let env = Arc::new(Environment {
|
|
client,
|
|
select_chain,
|
|
voting_rule,
|
|
voters: Arc::new(voters),
|
|
config,
|
|
network,
|
|
set_id: persistent_data.authority_set.set_id(),
|
|
authority_set: persistent_data.authority_set.clone(),
|
|
consensus_changes: persistent_data.consensus_changes.clone(),
|
|
voter_set_state: persistent_data.set_state.clone(),
|
|
});
|
|
|
|
let mut work = VoterWork {
|
|
// `voter` is set to a temporary value and replaced below when
|
|
// calling `rebuild_voter`.
|
|
voter: Box::new(futures::empty()) as Box<_>,
|
|
env,
|
|
voter_commands_rx,
|
|
};
|
|
work.rebuild_voter();
|
|
work
|
|
}
|
|
|
|
/// Rebuilds the `self.voter` field using the current authority set
|
|
/// state. This method should be called when we know that the authority set
|
|
/// has changed (e.g. as signalled by a voter command).
|
|
fn rebuild_voter(&mut self) {
|
|
debug!(target: "afg", "{}: Starting new voter with set ID {}", self.env.config.name(), self.env.set_id);
|
|
|
|
let authority_id = is_voter(&self.env.voters, &self.env.config.keystore)
|
|
.map(|ap| ap.public())
|
|
.unwrap_or(Default::default());
|
|
|
|
telemetry!(CONSENSUS_DEBUG; "afg.starting_new_voter";
|
|
"name" => ?self.env.config.name(),
|
|
"set_id" => ?self.env.set_id,
|
|
"authority_id" => authority_id.to_string(),
|
|
);
|
|
|
|
let chain_info = self.env.client.info();
|
|
telemetry!(CONSENSUS_INFO; "afg.authority_set";
|
|
"number" => ?chain_info.chain.finalized_number,
|
|
"hash" => ?chain_info.chain.finalized_hash,
|
|
"authority_id" => authority_id.to_string(),
|
|
"authority_set_id" => ?self.env.set_id,
|
|
"authorities" => {
|
|
let authorities: Vec<String> = self.env.voters.voters()
|
|
.iter().map(|(id, _)| id.to_string()).collect();
|
|
serde_json::to_string(&authorities)
|
|
.expect("authorities is always at least an empty vector; elements are always of type string")
|
|
},
|
|
);
|
|
|
|
match &*self.env.voter_set_state.read() {
|
|
VoterSetState::Live { completed_rounds, .. } => {
|
|
let last_finalized = (
|
|
chain_info.chain.finalized_hash,
|
|
chain_info.chain.finalized_number,
|
|
);
|
|
|
|
let global_comms = global_communication(
|
|
self.env.set_id,
|
|
&self.env.voters,
|
|
&self.env.client,
|
|
&self.env.network,
|
|
&self.env.config.keystore,
|
|
);
|
|
|
|
let last_completed_round = completed_rounds.last();
|
|
|
|
let voter = voter::Voter::new(
|
|
self.env.clone(),
|
|
(*self.env.voters).clone(),
|
|
global_comms,
|
|
last_completed_round.number,
|
|
last_completed_round.votes.clone(),
|
|
last_completed_round.base.clone(),
|
|
last_finalized,
|
|
);
|
|
|
|
self.voter = Box::new(voter);
|
|
},
|
|
VoterSetState::Paused { .. } =>
|
|
self.voter = Box::new(futures::empty()),
|
|
};
|
|
}
|
|
|
|
fn handle_voter_command(
|
|
&mut self,
|
|
command: VoterCommand<Block::Hash, NumberFor<Block>>
|
|
) -> Result<(), Error> {
|
|
match command {
|
|
VoterCommand::ChangeAuthorities(new) => {
|
|
let voters: Vec<String> = new.authorities.iter().map(move |(a, _)| {
|
|
format!("{}", a)
|
|
}).collect();
|
|
telemetry!(CONSENSUS_INFO; "afg.voter_command_change_authorities";
|
|
"number" => ?new.canon_number,
|
|
"hash" => ?new.canon_hash,
|
|
"voters" => ?voters,
|
|
"set_id" => ?new.set_id,
|
|
);
|
|
|
|
self.env.update_voter_set_state(|_| {
|
|
// start the new authority set using the block where the
|
|
// set changed (not where the signal happened!) as the base.
|
|
let set_state = VoterSetState::live(
|
|
new.set_id,
|
|
&*self.env.authority_set.inner().read(),
|
|
(new.canon_hash, new.canon_number),
|
|
);
|
|
|
|
aux_schema::write_voter_set_state(&*self.env.client, &set_state)?;
|
|
Ok(Some(set_state))
|
|
})?;
|
|
|
|
self.env = Arc::new(Environment {
|
|
voters: Arc::new(new.authorities.into_iter().collect()),
|
|
set_id: new.set_id,
|
|
voter_set_state: self.env.voter_set_state.clone(),
|
|
// Fields below are simply transferred and not updated.
|
|
client: self.env.client.clone(),
|
|
select_chain: self.env.select_chain.clone(),
|
|
config: self.env.config.clone(),
|
|
authority_set: self.env.authority_set.clone(),
|
|
consensus_changes: self.env.consensus_changes.clone(),
|
|
network: self.env.network.clone(),
|
|
voting_rule: self.env.voting_rule.clone(),
|
|
});
|
|
|
|
self.rebuild_voter();
|
|
Ok(())
|
|
}
|
|
VoterCommand::Pause(reason) => {
|
|
info!(target: "afg", "Pausing old validator set: {}", reason);
|
|
|
|
// not racing because old voter is shut down.
|
|
self.env.update_voter_set_state(|voter_set_state| {
|
|
let completed_rounds = voter_set_state.completed_rounds();
|
|
let set_state = VoterSetState::Paused { completed_rounds };
|
|
|
|
aux_schema::write_voter_set_state(&*self.env.client, &set_state)?;
|
|
Ok(Some(set_state))
|
|
})?;
|
|
|
|
self.rebuild_voter();
|
|
Ok(())
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<B, E, Block, RA, SC, VR> Future for VoterWork<B, E, Block, RA, SC, VR>
|
|
where
|
|
Block: BlockT<Hash=H256>,
|
|
NumberFor<Block>: BlockNumberOps,
|
|
RA: 'static + Send + Sync,
|
|
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
|
|
B: Backend<Block, Blake2Hasher> + 'static,
|
|
SC: SelectChain<Block> + 'static,
|
|
VR: VotingRule<Block, Client<B, E, Block, RA>> + Clone + 'static,
|
|
{
|
|
type Item = ();
|
|
type Error = Error;
|
|
|
|
fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
|
|
match self.voter.poll() {
|
|
Ok(Async::NotReady) => {}
|
|
Ok(Async::Ready(())) => {
|
|
// voters don't conclude naturally
|
|
return Err(Error::Safety("GRANDPA voter has concluded.".into()))
|
|
}
|
|
Err(CommandOrError::Error(e)) => {
|
|
// return inner observer error
|
|
return Err(e)
|
|
}
|
|
Err(CommandOrError::VoterCommand(command)) => {
|
|
// some command issued internally
|
|
self.handle_voter_command(command)?;
|
|
futures::task::current().notify();
|
|
}
|
|
}
|
|
|
|
match self.voter_commands_rx.poll() {
|
|
Ok(Async::NotReady) => {}
|
|
Err(_) => {
|
|
// the `voter_commands_rx` stream should not fail.
|
|
return Ok(Async::Ready(()))
|
|
}
|
|
Ok(Async::Ready(None)) => {
|
|
// the `voter_commands_rx` stream should never conclude since it's never closed.
|
|
return Ok(Async::Ready(()))
|
|
}
|
|
Ok(Async::Ready(Some(command))) => {
|
|
// some command issued externally
|
|
self.handle_voter_command(command)?;
|
|
futures::task::current().notify();
|
|
}
|
|
}
|
|
|
|
Ok(Async::NotReady)
|
|
}
|
|
}
|
|
|
|
#[deprecated(since = "1.1.0", note = "Please switch to run_grandpa_voter.")]
|
|
pub fn run_grandpa<B, E, Block: BlockT<Hash=H256>, N, RA, SC, VR, X, Sp>(
|
|
grandpa_params: GrandpaParams<B, E, Block, N, RA, SC, VR, X, Sp>,
|
|
) -> ::sp_blockchain::Result<impl Future<Item=(),Error=()> + Send + 'static> where
|
|
Block::Hash: Ord,
|
|
B: Backend<Block, Blake2Hasher> + 'static,
|
|
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
|
|
N: Network<Block> + Send + Clone + 'static,
|
|
SC: SelectChain<Block> + 'static,
|
|
NumberFor<Block>: BlockNumberOps,
|
|
DigestFor<Block>: Encode,
|
|
RA: Send + Sync + 'static,
|
|
VR: VotingRule<Block, Client<B, E, Block, RA>> + Clone + 'static,
|
|
X: futures03::Future<Output=()> + Clone + Send + Unpin + 'static,
|
|
Sp: futures03::task::Spawn + 'static,
|
|
{
|
|
run_grandpa_voter(grandpa_params)
|
|
}
|
|
|
|
/// When GRANDPA is not initialized we still need to register the finality
|
|
/// tracker inherent provider which might be expected by the runtime for block
|
|
/// authoring. Additionally, we register a gossip message validator that
|
|
/// discards all GRANDPA messages (otherwise, we end up banning nodes that send
|
|
/// us a `Neighbor` message, since there is no registered gossip validator for
|
|
/// the engine id defined in the message.)
|
|
pub fn setup_disabled_grandpa<B, E, Block: BlockT<Hash=H256>, RA, N>(
|
|
client: Arc<Client<B, E, Block, RA>>,
|
|
inherent_data_providers: &InherentDataProviders,
|
|
network: N,
|
|
) -> Result<(), sp_consensus::Error> where
|
|
B: Backend<Block, Blake2Hasher> + 'static,
|
|
E: CallExecutor<Block, Blake2Hasher> + Send + Sync + 'static,
|
|
RA: Send + Sync + 'static,
|
|
N: Network<Block> + Send + Clone + 'static,
|
|
{
|
|
register_finality_tracker_inherent_data_provider(
|
|
client,
|
|
inherent_data_providers,
|
|
)?;
|
|
|
|
// We register the GRANDPA protocol so that we don't consider it an anomaly
|
|
// to receive GRANDPA messages on the network. We don't process the
|
|
// messages.
|
|
network.register_notifications_protocol(communication::GRANDPA_ENGINE_ID);
|
|
|
|
Ok(())
|
|
}
|
|
|
|
/// Checks if this node is a voter in the given voter set.
|
|
///
|
|
/// Returns the key pair of the node that is being used in the current voter set or `None`.
|
|
fn is_voter(
|
|
voters: &Arc<VoterSet<AuthorityId>>,
|
|
keystore: &Option<KeyStorePtr>,
|
|
) -> Option<AuthorityPair> {
|
|
match keystore {
|
|
Some(keystore) => voters.voters().iter()
|
|
.find_map(|(p, _)| keystore.read().key_pair::<AuthorityPair>(&p).ok()),
|
|
None => None,
|
|
}
|
|
}
|
|
|
|
/// Returns the authority id of this node, if available.
|
|
fn authority_id<'a, I>(
|
|
authorities: &mut I,
|
|
keystore: &Option<KeyStorePtr>,
|
|
) -> Option<AuthorityId> where
|
|
I: Iterator<Item = &'a AuthorityId>,
|
|
{
|
|
match keystore {
|
|
Some(keystore) => {
|
|
authorities
|
|
.find_map(|p| {
|
|
keystore.read().key_pair::<AuthorityPair>(&p)
|
|
.ok()
|
|
.map(|ap| ap.public())
|
|
})
|
|
}
|
|
None => None,
|
|
}
|
|
}
|