mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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490 lines
14 KiB
Rust
490 lines
14 KiB
Rust
// Copyright 2017 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Polkadot is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Polkadot. If not, see <http://www.gnu.org/licenses/>.
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//! Polkadot-specific network implementation.
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//!
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//! This manages gossip of consensus messages for BFT and for parachain statements,
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//! parachain block and extrinsic data fetching, communication between collators and validators,
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//! and more.
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extern crate serde;
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#[macro_use]
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extern crate serde_derive;
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extern crate serde_json;
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extern crate substrate_bft as bft;
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extern crate substrate_codec as codec;
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extern crate substrate_network;
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extern crate substrate_primitives;
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extern crate polkadot_api;
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extern crate polkadot_consensus;
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extern crate polkadot_primitives;
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extern crate ed25519;
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extern crate futures;
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extern crate parking_lot;
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extern crate tokio;
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extern crate rhododendron;
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#[macro_use]
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extern crate log;
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mod router;
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pub mod consensus;
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use codec::Slicable;
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use futures::sync::oneshot;
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use parking_lot::Mutex;
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use polkadot_consensus::{Statement, SignedStatement, GenericStatement};
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use polkadot_primitives::{Block, SessionKey, Hash};
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use polkadot_primitives::parachain::{Id as ParaId, BlockData, Extrinsic, CandidateReceipt};
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use substrate_network::{PeerId, RequestId, Context};
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use substrate_network::consensus_gossip::ConsensusGossip;
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use substrate_network::{message, generic_message};
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use substrate_network::specialization::Specialization;
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use substrate_network::StatusMessage as GenericFullStatus;
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use std::collections::{HashMap, HashSet};
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use std::sync::Arc;
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#[cfg(test)]
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mod tests;
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/// Polkadot protocol id.
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pub const DOT_PROTOCOL_ID: ::substrate_network::ProtocolId = *b"dot";
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type FullStatus = GenericFullStatus<Block>;
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/// Specialization of the network service for the polkadot protocol.
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pub type NetworkService = ::substrate_network::Service<Block, PolkadotProtocol>;
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/// Status of a Polkadot node.
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#[derive(Debug, PartialEq, Eq, Clone)]
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pub struct Status {
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collating_for: Option<ParaId>,
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}
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impl Slicable for Status {
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fn encode(&self) -> Vec<u8> {
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let mut v = Vec::new();
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match self.collating_for {
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Some(ref id) => {
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v.push(1);
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id.using_encoded(|s| v.extend(s));
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}
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None => {
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v.push(0);
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}
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}
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v
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}
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fn decode<I: ::codec::Input>(input: &mut I) -> Option<Self> {
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let collating_for = match input.read_byte()? {
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0 => None,
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1 => Some(ParaId::decode(input)?),
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_ => return None,
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};
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Some(Status { collating_for })
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}
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}
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struct BlockDataRequest {
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attempted_peers: HashSet<SessionKey>,
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consensus_parent: Hash,
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candidate_hash: Hash,
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block_data_hash: Hash,
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sender: oneshot::Sender<BlockData>,
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}
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struct PeerInfo {
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status: Status,
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validator: bool,
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session_keys: HashMap<Hash, SessionKey>,
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}
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#[derive(Default)]
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struct KnowledgeEntry {
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knows_block_data: Vec<SessionKey>,
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knows_extrinsic: Vec<SessionKey>,
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block_data: Option<BlockData>,
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extrinsic: Option<Extrinsic>,
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}
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/// Tracks knowledge of peers.
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struct Knowledge {
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candidates: HashMap<Hash, KnowledgeEntry>,
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}
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impl Knowledge {
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pub fn new() -> Self {
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Knowledge {
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candidates: HashMap::new(),
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}
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}
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fn note_statement(&mut self, from: SessionKey, statement: &Statement) {
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match *statement {
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GenericStatement::Candidate(ref c) => {
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let mut entry = self.candidates.entry(c.hash()).or_insert_with(Default::default);
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entry.knows_block_data.push(from);
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entry.knows_extrinsic.push(from);
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}
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GenericStatement::Available(ref hash) => {
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let mut entry = self.candidates.entry(*hash).or_insert_with(Default::default);
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entry.knows_block_data.push(from);
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entry.knows_extrinsic.push(from);
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}
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GenericStatement::Valid(ref hash) | GenericStatement::Invalid(ref hash) => self.candidates.entry(*hash)
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.or_insert_with(Default::default)
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.knows_block_data
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.push(from),
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}
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}
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fn note_candidate(&mut self, hash: Hash, block_data: Option<BlockData>, extrinsic: Option<Extrinsic>) {
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let entry = self.candidates.entry(hash).or_insert_with(Default::default);
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entry.block_data = entry.block_data.take().or(block_data);
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entry.extrinsic = entry.extrinsic.take().or(extrinsic);
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}
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}
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struct CurrentConsensus {
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knowledge: Arc<Mutex<Knowledge>>,
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parent_hash: Hash,
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session_keys: HashMap<SessionKey, PeerId>,
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local_session_key: SessionKey,
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}
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impl CurrentConsensus {
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// get locally stored block data for a candidate.
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fn block_data(&self, hash: &Hash) -> Option<BlockData> {
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self.knowledge.lock().candidates.get(hash)
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.and_then(|entry| entry.block_data.clone())
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}
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fn peer_disconnected(&mut self, peer: &PeerInfo) {
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if let Some(key) = peer.session_keys.get(&self.parent_hash) {
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self.session_keys.remove(key);
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}
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}
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}
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/// Polkadot-specific messages.
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#[derive(Serialize, Deserialize)]
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pub enum Message {
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/// signed statement and localized parent hash.
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Statement(Hash, SignedStatement),
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/// Tell the peer your session key for the current block.
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// TODO: do this with a random challenge protocol
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SessionKey(Hash, SessionKey),
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/// Requesting parachain block data by candidate hash.
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RequestBlockData(RequestId, Hash),
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/// Provide block data by candidate hash or nothing if unknown.
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BlockData(RequestId, Option<BlockData>),
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}
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fn send_polkadot_message(ctx: &mut Context<Block>, to: PeerId, message: Message) {
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let encoded = ::serde_json::to_vec(&message).expect("serialization of messages infallible; qed");
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ctx.send_message(to, generic_message::Message::ChainSpecific(encoded))
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}
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/// Polkadot protocol attachment for substrate.
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pub struct PolkadotProtocol {
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peers: HashMap<PeerId, PeerInfo>,
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consensus_gossip: ConsensusGossip<Block>,
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collators: HashMap<ParaId, Vec<PeerId>>,
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collating_for: Option<ParaId>,
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live_consensus: Option<CurrentConsensus>,
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in_flight: HashMap<(RequestId, PeerId), BlockDataRequest>,
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pending: Vec<BlockDataRequest>,
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next_req_id: u64,
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}
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impl PolkadotProtocol {
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/// Instantiate a polkadot protocol handler.
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pub fn new() -> Self {
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PolkadotProtocol {
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peers: HashMap::new(),
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consensus_gossip: ConsensusGossip::new(),
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collators: HashMap::new(),
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collating_for: None,
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live_consensus: None,
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in_flight: HashMap::new(),
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pending: Vec::new(),
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next_req_id: 1,
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}
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}
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/// Send a statement to a validator.
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fn send_statement(&mut self, ctx: &mut Context<Block>, _val: SessionKey, parent_hash: Hash, statement: SignedStatement) {
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// TODO: something more targeted than gossip.
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let raw = ::serde_json::to_vec(&Message::Statement(parent_hash, statement))
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.expect("message serialization infallible; qed");
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self.consensus_gossip.multicast_chain_specific(ctx, raw, parent_hash);
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}
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/// Fetch block data by candidate receipt.
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fn fetch_block_data(&mut self, ctx: &mut Context<Block>, candidate: &CandidateReceipt, relay_parent: Hash) -> oneshot::Receiver<BlockData> {
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let (tx, rx) = oneshot::channel();
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self.pending.push(BlockDataRequest {
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attempted_peers: Default::default(),
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consensus_parent: relay_parent,
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candidate_hash: candidate.hash(),
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block_data_hash: candidate.block_data_hash,
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sender: tx,
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});
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self.dispatch_pending_requests(ctx);
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rx
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}
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/// Note new consensus session.
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fn new_consensus(&mut self, ctx: &mut Context<Block>, mut consensus: CurrentConsensus) {
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let parent_hash = consensus.parent_hash;
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let old_parent = self.live_consensus.as_ref().map(|c| c.parent_hash);
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for (id, info) in self.peers.iter_mut().filter(|&(_, ref info)| info.validator) {
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send_polkadot_message(
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ctx,
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*id,
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Message::SessionKey(parent_hash, consensus.local_session_key)
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);
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if let Some(key) = info.session_keys.get(&parent_hash) {
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consensus.session_keys.insert(*key, *id);
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}
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if let Some(ref old_parent) = old_parent {
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info.session_keys.remove(old_parent);
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}
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}
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self.live_consensus = Some(consensus);
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self.consensus_gossip.collect_garbage(old_parent.as_ref());
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}
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fn dispatch_pending_requests(&mut self, ctx: &mut Context<Block>) {
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let consensus = match self.live_consensus {
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Some(ref mut c) => c,
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None => {
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self.pending.clear();
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return;
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}
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};
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let knowledge = consensus.knowledge.lock();
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let mut new_pending = Vec::new();
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for mut pending in ::std::mem::replace(&mut self.pending, Vec::new()) {
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if pending.consensus_parent != consensus.parent_hash { continue }
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if let Some(entry) = knowledge.candidates.get(&pending.candidate_hash) {
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// answer locally
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if let Some(ref data) = entry.block_data {
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let _ = pending.sender.send(data.clone());
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continue;
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}
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let next_peer = entry.knows_block_data.iter()
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.filter_map(|x| consensus.session_keys.get(x).map(|id| (*x, *id)))
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.find(|&(ref key, _)| pending.attempted_peers.insert(*key))
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.map(|(_, id)| id);
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// dispatch to peer
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if let Some(peer_id) = next_peer {
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let req_id = self.next_req_id;
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self.next_req_id += 1;
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send_polkadot_message(
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ctx,
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peer_id,
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Message::RequestBlockData(req_id, pending.candidate_hash)
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);
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self.in_flight.insert((req_id, peer_id), pending);
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continue;
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}
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}
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new_pending.push(pending);
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}
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self.pending = new_pending;
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}
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fn on_polkadot_message(&mut self, ctx: &mut Context<Block>, peer_id: PeerId, raw: Vec<u8>, msg: Message) {
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match msg {
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Message::Statement(parent_hash, _statement) =>
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self.consensus_gossip.on_chain_specific(ctx, peer_id, raw, parent_hash),
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Message::SessionKey(parent_hash, key) => {
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{
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let info = match self.peers.get_mut(&peer_id) {
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Some(peer) => peer,
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None => return,
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};
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if !info.validator {
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ctx.disable_peer(peer_id);
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return;
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}
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match self.live_consensus {
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Some(ref mut consensus) if consensus.parent_hash == parent_hash => {
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consensus.session_keys.insert(key, peer_id);
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}
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_ => {}
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}
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info.session_keys.insert(parent_hash, key);
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}
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self.dispatch_pending_requests(ctx);
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}
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Message::RequestBlockData(req_id, hash) => {
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let block_data = self.live_consensus.as_ref()
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.and_then(|c| c.block_data(&hash));
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send_polkadot_message(ctx, peer_id, Message::BlockData(req_id, block_data));
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}
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Message::BlockData(req_id, data) => self.on_block_data(ctx, peer_id, req_id, data),
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}
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}
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fn on_block_data(&mut self, ctx: &mut Context<Block>, peer_id: PeerId, req_id: RequestId, data: Option<BlockData>) {
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match self.in_flight.remove(&(req_id, peer_id)) {
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Some(req) => {
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if let Some(data) = data {
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if data.hash() == req.block_data_hash {
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let _ = req.sender.send(data);
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return
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}
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}
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self.pending.push(req);
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self.dispatch_pending_requests(ctx);
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}
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None => ctx.disable_peer(peer_id),
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}
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}
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}
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impl Specialization<Block> for PolkadotProtocol {
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fn status(&self) -> Vec<u8> {
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Status { collating_for: self.collating_for.clone() }.encode()
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}
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fn on_connect(&mut self, ctx: &mut Context<Block>, peer_id: PeerId, status: FullStatus) {
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let local_status = match Status::decode(&mut &status.chain_status[..]) {
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Some(status) => status,
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None => {
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ctx.disable_peer(peer_id);
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return;
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}
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};
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if let Some(ref para_id) = local_status.collating_for {
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self.collators.entry(para_id.clone())
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.or_insert_with(Vec::new)
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.push(peer_id);
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}
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let validator = status.roles.iter().any(|r| *r == message::Role::Authority);
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self.peers.insert(peer_id, PeerInfo {
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status: local_status,
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session_keys: Default::default(),
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validator,
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});
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self.consensus_gossip.new_peer(ctx, peer_id, &status.roles);
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if let (true, &Some(ref consensus)) = (validator, &self.live_consensus) {
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send_polkadot_message(
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ctx,
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peer_id,
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Message::SessionKey(consensus.parent_hash, consensus.local_session_key)
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);
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}
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self.dispatch_pending_requests(ctx);
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}
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fn on_disconnect(&mut self, ctx: &mut Context<Block>, peer_id: PeerId) {
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if let Some(info) = self.peers.remove(&peer_id) {
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if let Some(collators) = info.status.collating_for.and_then(|id| self.collators.get_mut(&id)) {
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if let Some(pos) = collators.iter().position(|x| x == &peer_id) {
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collators.swap_remove(pos);
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}
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}
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if let (true, &mut Some(ref mut consensus)) = (info.validator, &mut self.live_consensus) {
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consensus.peer_disconnected(&info);
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}
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{
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let pending = &mut self.pending;
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self.in_flight.retain(|&(_, ref peer), val| {
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let retain = peer != &peer_id;
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if !retain {
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let (sender, _) = oneshot::channel();
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pending.push(::std::mem::replace(val, BlockDataRequest {
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attempted_peers: Default::default(),
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consensus_parent: Default::default(),
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candidate_hash: Default::default(),
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block_data_hash: Default::default(),
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sender,
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}));
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}
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retain
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});
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}
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self.consensus_gossip.peer_disconnected(ctx, peer_id);
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self.dispatch_pending_requests(ctx);
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}
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}
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fn on_message(&mut self, ctx: &mut Context<Block>, peer_id: PeerId, message: message::Message<Block>) {
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match message {
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generic_message::Message::BftMessage(msg) => {
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// TODO: check signature here? what if relevant block is unknown?
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self.consensus_gossip.on_bft_message(ctx, peer_id, msg)
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}
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generic_message::Message::ChainSpecific(raw) => {
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match serde_json::from_slice(&raw) {
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Ok(msg) => self.on_polkadot_message(ctx, peer_id, raw, msg),
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Err(e) => {
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trace!(target: "p_net", "Bad message from {}: {}", peer_id, e);
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ctx.disable_peer(peer_id);
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}
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}
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}
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_ => {}
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}
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}
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fn on_abort(&mut self) {
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self.consensus_gossip.abort();
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}
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fn maintain_peers(&mut self, ctx: &mut Context<Block>) {
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self.consensus_gossip.collect_garbage(None);
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self.dispatch_pending_requests(ctx);
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}
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}
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