mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-05-31 06:21:02 +00:00
27aafb0a04
* dynamic inclusion threshold calculator * collators interface * collation helpers * initial proposal-creation future * create proposer when asked to propose * remove local_availability duty * statement table tracks includable parachain count * beginnings of timing future * finish proposal logic * remove stray println * extract shared table to separate module * change ordering * includability tracking * fix doc * initial changes to parachains module * initialise dummy block before API calls * give polkadot control over round proposer based on random seed * propose only after enough candidates * flesh out parachains module a bit more * set_heads * actually introduce set_heads to runtime * update block_builder to accept parachains * split block validity errors from real errors in evaluation * update WASM runtimes * polkadot-api methods for parachains additions * delay evaluation until candidates are ready * comments * fix dynamic inclusion with zero initial * test for includability tracker * wasm validation of parachain candidates * move primitives to primitives crate * remove runtime-std dependency from codec * adjust doc * polkadot-parachain-primitives * kill legacy polkadot-validator crate * basic-add test chain * test for basic_add parachain * move to test-chains dir * use wasm-build * new wasm directory layout * reorganize a bit more * Fix for rh-minimal-parachain (#141) * Remove extern "C" We already encountered such behavior (bug?) in pwasm-std, I believe. * Fix `panic_fmt` signature by adding `_col` Wrong `panic_fmt` signature can inhibit some optimizations in LTO mode. * Add linker flags and use wasm-gc in build script Pass --import-memory to LLD to emit wasm binary with imported memory. Also use wasm-gc instead of wasm-build. * Fix effective_max. I'm not sure why it was the way it was actually. * Recompile wasm. * Fix indent * more basic_add tests * validate parachain WASM * produce statements on receiving statements * tests for reactive statement production * fix build * add OOM lang item to runtime-io * use dynamic_inclusion when evaluating as well * fix update_includable_count * remove dead code * grumbles * actually defer round_proposer logic * update wasm * address a few more grumbles * grumbles * update WASM checkins * remove dependency on tokio-timer
732 lines
23 KiB
Rust
732 lines
23 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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//! Propagation and agreement of candidates.
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//!
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//! Authorities are split into groups by parachain, and each authority might come
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//! up its own candidate for their parachain. Within groups, authorities pass around
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//! their candidates and produce statements of validity.
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//!
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//! Any candidate that receives majority approval by the authorities in a group
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//! may be subject to inclusion, unless any authorities flag that candidate as invalid.
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//!
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//! Wrongly flagging as invalid should be strongly disincentivized, so that in the
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//! equilibrium state it is not expected to happen. Likewise with the submission
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//! of invalid blocks.
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//!
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//! Groups themselves may be compromised by malicious authorities.
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extern crate ed25519;
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extern crate parking_lot;
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extern crate polkadot_api;
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extern crate polkadot_collator as collator;
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extern crate polkadot_statement_table as table;
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extern crate polkadot_parachain as parachain;
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extern crate polkadot_primitives;
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extern crate polkadot_transaction_pool as transaction_pool;
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extern crate polkadot_runtime;
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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_primitives as primitives;
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extern crate substrate_runtime_support as runtime_support;
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extern crate substrate_network;
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extern crate exit_future;
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extern crate tokio_core;
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extern crate substrate_client as client;
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#[macro_use]
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extern crate error_chain;
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#[macro_use]
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extern crate futures;
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#[macro_use]
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extern crate log;
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#[cfg(test)]
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extern crate substrate_keyring;
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use std::collections::{HashMap, HashSet};
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use std::sync::Arc;
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use std::time::{Duration, Instant};
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use codec::Slicable;
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use table::generic::Statement as GenericStatement;
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use runtime_support::Hashable;
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use polkadot_api::{PolkadotApi, BlockBuilder};
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use polkadot_primitives::{Hash, Timestamp};
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use polkadot_primitives::parachain::{Id as ParaId, Chain, DutyRoster, BlockData, Extrinsic, CandidateReceipt};
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use primitives::block::{Block as SubstrateBlock, Header as SubstrateHeader, HeaderHash, Id as BlockId, Number as BlockNumber};
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use primitives::AuthorityId;
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use transaction_pool::{Ready, TransactionPool};
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use tokio_core::reactor::{Handle, Timeout, Interval};
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use futures::prelude::*;
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use futures::future::{self, Shared};
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use parking_lot::Mutex;
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use collation::CollationFetch;
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use dynamic_inclusion::DynamicInclusion;
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pub use self::collation::{Collators, Collation};
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pub use self::error::{ErrorKind, Error};
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pub use self::shared_table::{SharedTable, StatementSource, StatementProducer, ProducedStatements};
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pub use service::Service;
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mod collation;
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mod dynamic_inclusion;
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mod evaluation;
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mod error;
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mod service;
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mod shared_table;
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// block size limit.
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const MAX_TRANSACTIONS_SIZE: usize = 4 * 1024 * 1024;
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/// A handle to a statement table router.
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///
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/// This is expected to be a lightweight, shared type like an `Arc`.
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pub trait TableRouter: Clone {
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/// Errors when fetching data from the network.
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type Error;
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/// Future that resolves when candidate data is fetched.
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type FetchCandidate: IntoFuture<Item=BlockData,Error=Self::Error>;
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/// Future that resolves when extrinsic candidate data is fetched.
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type FetchExtrinsic: IntoFuture<Item=Extrinsic,Error=Self::Error>;
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/// Note local candidate data, making it available on the network to other validators.
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fn local_candidate_data(&self, hash: Hash, block_data: BlockData, extrinsic: Extrinsic);
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/// Fetch block data for a specific candidate.
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fn fetch_block_data(&self, candidate: &CandidateReceipt) -> Self::FetchCandidate;
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/// Fetch extrinsic data for a specific candidate.
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fn fetch_extrinsic_data(&self, candidate: &CandidateReceipt) -> Self::FetchExtrinsic;
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}
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/// A long-lived network which can create statement table routing instances.
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pub trait Network {
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/// The table router type. This should handle importing of any statements,
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/// routing statements to peers, and driving completion of any `StatementProducers`.
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type TableRouter: TableRouter;
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/// Instantiate a table router using the given shared table.
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fn table_router(&self, table: Arc<SharedTable>) -> Self::TableRouter;
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}
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/// Information about a specific group.
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#[derive(Debug, Clone, Default)]
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pub struct GroupInfo {
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/// Authorities meant to check validity of candidates.
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pub validity_guarantors: HashSet<AuthorityId>,
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/// Authorities meant to check availability of candidate data.
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pub availability_guarantors: HashSet<AuthorityId>,
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/// Number of votes needed for validity.
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pub needed_validity: usize,
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/// Number of votes needed for availability.
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pub needed_availability: usize,
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}
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/// Sign a table statement against a parent hash.
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/// The actual message signed is the encoded statement concatenated with the
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/// parent hash.
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pub fn sign_table_statement(statement: &table::Statement, key: &ed25519::Pair, parent_hash: &Hash) -> ed25519::Signature {
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use polkadot_primitives::parachain::Statement as RawStatement;
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let raw = match *statement {
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GenericStatement::Candidate(ref c) => RawStatement::Candidate(c.clone()),
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GenericStatement::Valid(h) => RawStatement::Valid(h),
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GenericStatement::Invalid(h) => RawStatement::Invalid(h),
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GenericStatement::Available(h) => RawStatement::Available(h),
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};
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let mut encoded = raw.encode();
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encoded.extend(&parent_hash.0);
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key.sign(&encoded)
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}
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fn make_group_info(roster: DutyRoster, authorities: &[AuthorityId], local_id: AuthorityId) -> Result<(HashMap<ParaId, GroupInfo>, LocalDuty), Error> {
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if roster.validator_duty.len() != authorities.len() {
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bail!(ErrorKind::InvalidDutyRosterLength(authorities.len(), roster.validator_duty.len()))
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}
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if roster.guarantor_duty.len() != authorities.len() {
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bail!(ErrorKind::InvalidDutyRosterLength(authorities.len(), roster.guarantor_duty.len()))
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}
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let mut local_validation = None;
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let mut map = HashMap::new();
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let duty_iter = authorities.iter().zip(&roster.validator_duty).zip(&roster.guarantor_duty);
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for ((authority, v_duty), a_duty) in duty_iter {
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if authority == &local_id {
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local_validation = Some(v_duty.clone());
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}
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match *v_duty {
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Chain::Relay => {}, // does nothing for now.
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Chain::Parachain(ref id) => {
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map.entry(id.clone()).or_insert_with(GroupInfo::default)
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.validity_guarantors
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.insert(authority.clone());
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}
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}
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match *a_duty {
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Chain::Relay => {}, // does nothing for now.
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Chain::Parachain(ref id) => {
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map.entry(id.clone()).or_insert_with(GroupInfo::default)
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.availability_guarantors
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.insert(authority.clone());
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}
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}
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}
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for live_group in map.values_mut() {
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let validity_len = live_group.validity_guarantors.len();
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let availability_len = live_group.availability_guarantors.len();
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live_group.needed_validity = validity_len / 2 + validity_len % 2;
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live_group.needed_availability = availability_len / 2 + availability_len % 2;
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}
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match local_validation {
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Some(local_validation) => {
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let local_duty = LocalDuty {
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validation: local_validation,
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};
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Ok((map, local_duty))
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}
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None => bail!(ErrorKind::NotValidator(local_id)),
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}
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}
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fn timer_error(e: &::std::io::Error) -> Error {
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ErrorKind::Timer(format!("{}", e)).into()
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}
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/// Polkadot proposer factory.
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pub struct ProposerFactory<C, N, P> {
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/// The client instance.
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pub client: Arc<C>,
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/// The transaction pool.
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pub transaction_pool: Arc<Mutex<TransactionPool>>,
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/// The backing network handle.
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pub network: N,
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/// Parachain collators.
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pub collators: P,
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/// The timer used to schedule proposal intervals.
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pub handle: Handle,
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/// The duration after which parachain-empty blocks will be allowed.
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pub parachain_empty_duration: Duration,
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}
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impl<C, N, P> bft::ProposerFactory for ProposerFactory<C, N, P>
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where
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C: PolkadotApi,
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N: Network,
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P: Collators,
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{
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type Proposer = Proposer<C, N::TableRouter, P>;
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type Error = Error;
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fn init(&self, parent_header: &SubstrateHeader, authorities: &[AuthorityId], sign_with: Arc<ed25519::Pair>) -> Result<Self::Proposer, Error> {
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use std::time::Duration;
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const DELAY_UNTIL: Duration = Duration::from_millis(5000);
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let parent_hash = parent_header.blake2_256().into();
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let checked_id = self.client.check_id(BlockId::Hash(parent_hash))?;
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let duty_roster = self.client.duty_roster(&checked_id)?;
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let random_seed = self.client.random_seed(&checked_id)?;
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let (group_info, local_duty) = make_group_info(
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duty_roster,
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authorities,
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sign_with.public().0,
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)?;
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let active_parachains = self.client.active_parachains(&checked_id)?;
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let n_parachains = active_parachains.len();
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let table = Arc::new(SharedTable::new(group_info, sign_with.clone(), parent_hash));
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let router = self.network.table_router(table.clone());
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let dynamic_inclusion = DynamicInclusion::new(
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n_parachains,
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Instant::now(),
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self.parachain_empty_duration.clone(),
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);
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let timeout = Timeout::new(DELAY_UNTIL, &self.handle)
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.map_err(|e| timer_error(&e))?;
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debug!(target: "bft", "Initialising consensus proposer. Refusing to evaluate for {:?} from now.",
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DELAY_UNTIL);
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// TODO [PoC-2]: kick off collation process.
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Ok(Proposer {
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client: self.client.clone(),
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collators: self.collators.clone(),
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delay: timeout.shared(),
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handle: self.handle.clone(),
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dynamic_inclusion,
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local_duty,
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local_key: sign_with,
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parent_hash,
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parent_id: checked_id,
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parent_number: parent_header.number,
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random_seed,
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router,
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table,
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transaction_pool: self.transaction_pool.clone(),
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})
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}
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}
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struct LocalDuty {
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validation: Chain,
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}
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/// The Polkadot proposer logic.
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pub struct Proposer<C: PolkadotApi, R, P> {
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client: Arc<C>,
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collators: P,
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delay: Shared<Timeout>,
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dynamic_inclusion: DynamicInclusion,
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handle: Handle,
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local_duty: LocalDuty,
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local_key: Arc<ed25519::Pair>,
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parent_hash: HeaderHash,
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parent_id: C::CheckedBlockId,
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parent_number: BlockNumber,
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random_seed: Hash,
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router: R,
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table: Arc<SharedTable>,
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transaction_pool: Arc<Mutex<TransactionPool>>,
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}
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impl<C, R, P> bft::Proposer for Proposer<C, R, P>
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where
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C: PolkadotApi,
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R: TableRouter,
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P: Collators,
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{
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type Error = Error;
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type Create = future::Either<
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CreateProposal<C, R, P>,
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future::FutureResult<SubstrateBlock, Error>,
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>;
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type Evaluate = Box<Future<Item=bool, Error=Error>>;
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fn propose(&self) -> Self::Create {
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const ATTEMPT_PROPOSE_EVERY: Duration = Duration::from_millis(100);
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let initial_included = self.table.includable_count();
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let enough_candidates = self.dynamic_inclusion.acceptable_in(
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Instant::now(),
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initial_included,
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).unwrap_or_default();
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let timing = {
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let delay = self.delay.clone();
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let dynamic_inclusion = self.dynamic_inclusion.clone();
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let make_timing = move |handle| -> Result<ProposalTiming, ::std::io::Error> {
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let attempt_propose = Interval::new(ATTEMPT_PROPOSE_EVERY, handle)?;
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let enough_candidates = Timeout::new(enough_candidates, handle)?;
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Ok(ProposalTiming {
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attempt_propose,
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enough_candidates,
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dynamic_inclusion,
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minimum_delay: Some(delay),
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last_included: initial_included,
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})
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};
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match make_timing(&self.handle) {
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Ok(timing) => timing,
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Err(e) => {
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return future::Either::B(future::err(timer_error(&e)));
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}
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}
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};
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future::Either::A(CreateProposal {
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parent_hash: self.parent_hash.clone(),
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parent_number: self.parent_number.clone(),
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parent_id: self.parent_id.clone(),
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client: self.client.clone(),
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transaction_pool: self.transaction_pool.clone(),
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collation: CollationFetch::new(
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self.local_duty.validation,
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self.parent_id.clone(),
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self.parent_hash.clone(),
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self.collators.clone(),
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self.client.clone()
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),
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table: self.table.clone(),
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router: self.router.clone(),
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timing,
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})
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}
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fn evaluate(&self, proposal: &SubstrateBlock) -> Self::Evaluate {
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debug!(target: "bft", "evaluating block on top of parent ({}, {:?})", self.parent_number, self.parent_hash);
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let active_parachains = match self.client.active_parachains(&self.parent_id) {
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Ok(x) => x,
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Err(e) => return Box::new(future::err(e.into())) as Box<_>,
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};
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let current_timestamp = current_timestamp();
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// do initial serialization and structural integrity checks.
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let maybe_proposal = evaluation::evaluate_initial(
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proposal,
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current_timestamp,
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&self.parent_hash,
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self.parent_number,
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&active_parachains,
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);
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let proposal = match maybe_proposal {
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Ok(p) => p,
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Err(e) => {
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// TODO: these errors are easily re-checked in runtime.
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debug!(target: "bft", "Invalid proposal: {:?}", e);
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return Box::new(future::ok(false));
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}
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};
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let vote_delays = {
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// delay casting vote until able (according to minimum block time)
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let minimum_delay = self.delay.clone()
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.map_err(|e| timer_error(&*e));
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let included_candidate_hashes = proposal
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.parachain_heads()
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.iter()
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.map(|candidate| candidate.hash());
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// delay casting vote until we have proof that all candidates are
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// includable.
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let includability_tracker = self.table.track_includability(included_candidate_hashes)
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.map_err(|_| ErrorKind::PrematureDestruction.into());
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// the duration at which the given number of parachains is acceptable.
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let count_delay = self.dynamic_inclusion.acceptable_in(
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Instant::now(),
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proposal.parachain_heads().len(),
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);
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// the duration until the given timestamp is current
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let proposed_timestamp = proposal.timestamp();
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let timestamp_delay = if proposed_timestamp > current_timestamp {
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Some(Duration::from_secs(proposed_timestamp - current_timestamp))
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} else {
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None
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};
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// construct a future from the maximum of the two durations.
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let temporary_delay = match ::std::cmp::max(timestamp_delay, count_delay) {
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Some(duration) => {
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let maybe_timeout = Timeout::new(duration, &self.handle);
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let f = future::result(maybe_timeout)
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.and_then(|timeout| timeout)
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.map_err(|e| timer_error(&e));
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future::Either::A(f)
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}
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None => future::Either::B(future::ok(())),
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};
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minimum_delay.join3(includability_tracker, temporary_delay)
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};
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// evaluate whether the block is actually valid.
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// TODO: is it better to delay this until the delays are finished?
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let evaluated = self.client.evaluate_block(&self.parent_id, proposal.into()).map_err(Into::into);
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let future = future::result(evaluated).and_then(move |good| {
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let end_result = future::ok(good);
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if good {
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// delay a "good" vote.
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future::Either::A(vote_delays.and_then(|_| end_result))
|
|
} else {
|
|
// don't delay a "bad" evaluation.
|
|
future::Either::B(end_result)
|
|
}
|
|
});
|
|
|
|
Box::new(future) as Box<_>
|
|
}
|
|
|
|
fn round_proposer(&self, round_number: usize, authorities: &[AuthorityId]) -> AuthorityId {
|
|
use primitives::uint::U256;
|
|
|
|
let len: U256 = authorities.len().into();
|
|
let offset = U256::from_big_endian(&self.random_seed.0) % len;
|
|
let offset = offset.low_u64() as usize + round_number;
|
|
|
|
let proposer = authorities[offset % authorities.len()].clone();
|
|
trace!(target: "bft", "proposer for round {} is {}", round_number, Hash::from(proposer));
|
|
|
|
proposer
|
|
}
|
|
|
|
fn import_misbehavior(&self, misbehavior: Vec<(AuthorityId, bft::Misbehavior)>) {
|
|
use bft::generic::Misbehavior as GenericMisbehavior;
|
|
use primitives::bft::{MisbehaviorKind, MisbehaviorReport};
|
|
use polkadot_runtime::{Call, Extrinsic, UncheckedExtrinsic, ConsensusCall};
|
|
|
|
let local_id = self.local_key.public().0;
|
|
let mut pool = self.transaction_pool.lock();
|
|
let mut next_index = {
|
|
let readiness_evaluator = Ready::create(self.parent_id.clone(), &*self.client);
|
|
|
|
pool.cull(None, readiness_evaluator.clone());
|
|
let cur_index = pool.pending(readiness_evaluator)
|
|
.filter(|tx| tx.as_ref().as_ref().signed == local_id)
|
|
.last()
|
|
.map(|tx| Ok(tx.as_ref().as_ref().index))
|
|
.unwrap_or_else(|| self.client.index(&self.parent_id, local_id));
|
|
|
|
match cur_index {
|
|
Ok(cur_index) => cur_index + 1,
|
|
Err(e) => {
|
|
warn!(target: "consensus", "Error computing next transaction index: {}", e);
|
|
return;
|
|
}
|
|
}
|
|
};
|
|
|
|
for (target, misbehavior) in misbehavior {
|
|
let report = MisbehaviorReport {
|
|
parent_hash: self.parent_hash,
|
|
parent_number: self.parent_number,
|
|
target,
|
|
misbehavior: match misbehavior {
|
|
GenericMisbehavior::ProposeOutOfTurn(_, _, _) => continue,
|
|
GenericMisbehavior::DoublePropose(_, _, _) => continue,
|
|
GenericMisbehavior::DoublePrepare(round, (h1, s1), (h2, s2))
|
|
=> MisbehaviorKind::BftDoublePrepare(round as u32, (h1, s1.signature), (h2, s2.signature)),
|
|
GenericMisbehavior::DoubleCommit(round, (h1, s1), (h2, s2))
|
|
=> MisbehaviorKind::BftDoubleCommit(round as u32, (h1, s1.signature), (h2, s2.signature)),
|
|
}
|
|
};
|
|
let extrinsic = Extrinsic {
|
|
signed: local_id,
|
|
index: next_index,
|
|
function: Call::Consensus(ConsensusCall::report_misbehavior(report)),
|
|
};
|
|
|
|
next_index += 1;
|
|
|
|
let signature = self.local_key.sign(&extrinsic.encode()).into();
|
|
let uxt = UncheckedExtrinsic { extrinsic, signature };
|
|
|
|
pool.import(uxt).expect("locally signed extrinsic is valid; qed");
|
|
}
|
|
}
|
|
}
|
|
|
|
fn current_timestamp() -> Timestamp {
|
|
use std::time;
|
|
|
|
time::SystemTime::now().duration_since(time::UNIX_EPOCH)
|
|
.expect("now always later than unix epoch; qed")
|
|
.as_secs()
|
|
}
|
|
|
|
struct ProposalTiming {
|
|
attempt_propose: Interval,
|
|
dynamic_inclusion: DynamicInclusion,
|
|
enough_candidates: Timeout,
|
|
minimum_delay: Option<Shared<Timeout>>,
|
|
last_included: usize,
|
|
}
|
|
|
|
impl ProposalTiming {
|
|
// whether it's time to attempt a proposal.
|
|
// shouldn't be called outside of the context of a task.
|
|
fn poll(&mut self, included: usize) -> Poll<(), Error> {
|
|
// first drain from the interval so when the minimum delay is up
|
|
// we don't have any notifications built up.
|
|
//
|
|
// this interval is just meant to produce periodic task wakeups
|
|
// that lead to the `dynamic_inclusion` getting updated as necessary.
|
|
if let Async::Ready(x) = self.attempt_propose.poll()
|
|
.map_err(|e| timer_error(&e))?
|
|
{
|
|
x.expect("timer still alive; intervals never end; qed");
|
|
}
|
|
|
|
if let Some(ref mut min) = self.minimum_delay {
|
|
try_ready!(min.poll().map_err(|e| timer_error(&*e)));
|
|
}
|
|
|
|
self.minimum_delay = None; // after this point, the future must have completed.
|
|
|
|
if included == self.last_included {
|
|
return self.enough_candidates.poll().map_err(|e| timer_error(&e));
|
|
}
|
|
|
|
// the amount of includable candidates has changed. schedule a wakeup
|
|
// if it's not sufficient anymore.
|
|
let now = Instant::now();
|
|
match self.dynamic_inclusion.acceptable_in(now, included) {
|
|
Some(duration) => {
|
|
self.last_included = included;
|
|
self.enough_candidates.reset(now + duration);
|
|
self.enough_candidates.poll().map_err(|e| timer_error(&e))
|
|
}
|
|
None => {
|
|
Ok(Async::Ready(()))
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Future which resolves upon the creation of a proposal.
|
|
pub struct CreateProposal<C: PolkadotApi, R, P: Collators> {
|
|
parent_hash: HeaderHash,
|
|
parent_number: BlockNumber,
|
|
parent_id: C::CheckedBlockId,
|
|
client: Arc<C>,
|
|
transaction_pool: Arc<Mutex<TransactionPool>>,
|
|
collation: CollationFetch<P, C>,
|
|
router: R,
|
|
table: Arc<SharedTable>,
|
|
timing: ProposalTiming,
|
|
}
|
|
|
|
impl<C, R, P> CreateProposal<C, R, P>
|
|
where
|
|
C: PolkadotApi,
|
|
R: TableRouter,
|
|
P: Collators,
|
|
{
|
|
fn propose_with(&self, candidates: Vec<CandidateReceipt>) -> Result<SubstrateBlock, Error> {
|
|
// TODO: handle case when current timestamp behind that in state.
|
|
let timestamp = current_timestamp();
|
|
let mut block_builder = self.client.build_block(
|
|
&self.parent_id,
|
|
timestamp,
|
|
candidates,
|
|
)?;
|
|
|
|
let readiness_evaluator = Ready::create(self.parent_id.clone(), &*self.client);
|
|
|
|
{
|
|
let mut pool = self.transaction_pool.lock();
|
|
let mut unqueue_invalid = Vec::new();
|
|
let mut pending_size = 0;
|
|
|
|
pool.cull(None, readiness_evaluator.clone());
|
|
for pending in pool.pending(readiness_evaluator.clone()) {
|
|
// skip and cull transactions which are too large.
|
|
if pending.encoded_size() > MAX_TRANSACTIONS_SIZE {
|
|
unqueue_invalid.push(pending.hash().clone());
|
|
continue
|
|
}
|
|
|
|
if pending_size + pending.encoded_size() >= MAX_TRANSACTIONS_SIZE { break }
|
|
|
|
match block_builder.push_extrinsic(pending.as_transaction().clone()) {
|
|
Ok(()) => {
|
|
pending_size += pending.encoded_size();
|
|
}
|
|
Err(e) => {
|
|
trace!(target: "transaction-pool", "Invalid transaction: {}", e);
|
|
unqueue_invalid.push(pending.hash().clone());
|
|
}
|
|
}
|
|
}
|
|
|
|
for tx_hash in unqueue_invalid {
|
|
pool.remove(&tx_hash, false);
|
|
}
|
|
}
|
|
|
|
let polkadot_block = block_builder.bake();
|
|
|
|
info!("Proposing block [number: {}; hash: {}; parent_hash: {}; extrinsics: [{}]]",
|
|
polkadot_block.header.number,
|
|
Hash::from(polkadot_block.header.blake2_256()),
|
|
polkadot_block.header.parent_hash,
|
|
polkadot_block.extrinsics.iter()
|
|
.map(|xt| format!("{}", Hash::from(xt.blake2_256())))
|
|
.collect::<Vec<_>>()
|
|
.join(", ")
|
|
);
|
|
|
|
let substrate_block = Slicable::decode(&mut polkadot_block.encode().as_slice())
|
|
.expect("polkadot blocks defined to serialize to substrate blocks correctly; qed");
|
|
|
|
// TODO: full re-evaluation
|
|
let active_parachains = self.client.active_parachains(&self.parent_id)?;
|
|
assert!(evaluation::evaluate_initial(
|
|
&substrate_block,
|
|
timestamp,
|
|
&self.parent_hash,
|
|
self.parent_number,
|
|
&active_parachains,
|
|
).is_ok());
|
|
|
|
Ok(substrate_block)
|
|
}
|
|
}
|
|
|
|
impl<C, R, P> Future for CreateProposal<C, R, P>
|
|
where
|
|
C: PolkadotApi,
|
|
R: TableRouter,
|
|
P: Collators,
|
|
{
|
|
type Item = SubstrateBlock;
|
|
type Error = Error;
|
|
|
|
fn poll(&mut self) -> Poll<SubstrateBlock, Error> {
|
|
// 1. poll local collation future.
|
|
match self.collation.poll() {
|
|
Ok(Async::Ready((collation, extrinsic))) => {
|
|
let hash = collation.receipt.hash();
|
|
self.router.local_candidate_data(hash, collation.block_data, extrinsic);
|
|
|
|
// TODO: if we are an availability guarantor also, we should produce an availability statement.
|
|
self.table.sign_and_import(&self.router, GenericStatement::Candidate(collation.receipt));
|
|
}
|
|
Ok(Async::NotReady) => {},
|
|
Err(_) => {}, // TODO: handle this failure to collate.
|
|
}
|
|
|
|
// 2. try to propose if we have enough includable candidates and other
|
|
// delays have concluded.
|
|
let included = self.table.includable_count();
|
|
try_ready!(self.timing.poll(included));
|
|
|
|
// 3. propose
|
|
let proposed_candidates = self.table.with_proposal(|proposed_set| {
|
|
proposed_set.into_iter().cloned().collect()
|
|
});
|
|
|
|
self.propose_with(proposed_candidates).map(Async::Ready)
|
|
}
|
|
}
|