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9756b2d676
* Register listeners in statement distribution * Review fixes
555 lines
21 KiB
Rust
555 lines
21 KiB
Rust
// Copyright 2017-2020 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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//! Message types for the overseer and subsystems.
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//!
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//! These messages are intended to define the protocol by which different subsystems communicate with each
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//! other and signals that they receive from an overseer to coordinate their work.
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//! This is intended for use with the `polkadot-overseer` crate.
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//!
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//! Subsystems' APIs are defined separately from their implementation, leading to easier mocking.
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use futures::channel::{mpsc, oneshot};
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use polkadot_node_network_protocol::{
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v1 as protocol_v1, NetworkBridgeEvent, ReputationChange, PeerId, PeerSet,
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};
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use polkadot_node_primitives::{
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CollationGenerationConfig, MisbehaviorReport, SignedFullStatement, ValidationResult,
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};
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use polkadot_primitives::v1::{
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AvailableData, BackedCandidate, BlockNumber, CandidateDescriptor, CandidateEvent,
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CandidateReceipt, CollatorId, CommittedCandidateReceipt,
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CoreState, ErasureChunk, GroupRotationInfo, Hash, Id as ParaId,
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OccupiedCoreAssumption, PersistedValidationData, PoV, SessionIndex, SignedAvailabilityBitfield,
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TransientValidationData, ValidationCode, ValidatorId, ValidationData, ValidatorIndex,
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ValidatorSignature,
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};
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use std::sync::Arc;
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/// A notification of a new backed candidate.
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#[derive(Debug)]
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pub struct NewBackedCandidate(pub BackedCandidate);
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/// Messages received by the Candidate Selection subsystem.
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#[derive(Debug)]
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pub enum CandidateSelectionMessage {
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/// A candidate collation can be fetched from a collator and should be considered for seconding.
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Collation(Hash, ParaId, CollatorId),
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/// We recommended a particular candidate to be seconded, but it was invalid; penalize the collator.
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/// The hash is the relay parent.
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Invalid(Hash, CandidateReceipt),
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}
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impl CandidateSelectionMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::Collation(hash, ..) => Some(*hash),
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Self::Invalid(hash, _) => Some(*hash),
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}
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}
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}
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impl Default for CandidateSelectionMessage {
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fn default() -> Self {
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CandidateSelectionMessage::Invalid(Default::default(), Default::default())
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}
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}
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/// Messages received by the Candidate Backing subsystem.
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#[derive(Debug)]
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pub enum CandidateBackingMessage {
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/// Requests a set of backable candidates that could be backed in a child of the given
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/// relay-parent, referenced by its hash.
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GetBackedCandidates(Hash, oneshot::Sender<Vec<NewBackedCandidate>>),
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/// Note that the Candidate Backing subsystem should second the given candidate in the context of the
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/// given relay-parent (ref. by hash). This candidate must be validated.
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Second(Hash, CandidateReceipt, PoV),
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/// Note a validator's statement about a particular candidate. Disagreements about validity must be escalated
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/// to a broader check by Misbehavior Arbitration. Agreements are simply tallied until a quorum is reached.
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Statement(Hash, SignedFullStatement),
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}
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impl CandidateBackingMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::GetBackedCandidates(hash, _) => Some(*hash),
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Self::Second(hash, _, _) => Some(*hash),
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Self::Statement(hash, _) => Some(*hash),
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}
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}
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}
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/// Blanket error for validation failing for internal reasons.
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#[derive(Debug)]
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pub struct ValidationFailed(pub String);
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/// Messages received by the Validation subsystem.
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///
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/// ## Validation Requests
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///
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/// Validation requests made to the subsystem should return an error only on internal error.
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/// Otherwise, they should return either `Ok(ValidationResult::Valid(_))`
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/// or `Ok(ValidationResult::Invalid)`.
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#[derive(Debug)]
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pub enum CandidateValidationMessage {
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/// Validate a candidate with provided parameters using relay-chain state.
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///
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/// This will implicitly attempt to gather the `PersistedValidationData` and `ValidationCode`
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/// from the runtime API of the chain, based on the `relay_parent`
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/// of the `CandidateDescriptor`.
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///
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/// If there is no state available which can provide this data or the core for
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/// the para is not free at the relay-parent, an error is returned.
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ValidateFromChainState(
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CandidateDescriptor,
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Arc<PoV>,
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oneshot::Sender<Result<ValidationResult, ValidationFailed>>,
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),
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/// Validate a candidate with provided, exhaustive parameters for validation.
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///
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/// Explicitly provide the `PersistedValidationData` and `ValidationCode` so this can do full
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/// validation without needing to access the state of the relay-chain. Optionally provide the
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/// `TransientValidationData` for further checks on the outputs.
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ValidateFromExhaustive(
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PersistedValidationData,
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Option<TransientValidationData>,
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ValidationCode,
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CandidateDescriptor,
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Arc<PoV>,
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oneshot::Sender<Result<ValidationResult, ValidationFailed>>,
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),
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}
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impl CandidateValidationMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::ValidateFromChainState(_, _, _) => None,
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Self::ValidateFromExhaustive(_, _, _, _, _, _) => None,
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}
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}
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}
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/// Messages received by the Collator Protocol subsystem.
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#[derive(Debug)]
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pub enum CollatorProtocolMessage {
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/// Signal to the collator protocol that it should connect to validators with the expectation
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/// of collating on the given para. This is only expected to be called once, early on, if at all,
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/// and only by the Collation Generation subsystem. As such, it will overwrite the value of
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/// the previous signal.
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///
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/// This should be sent before any `DistributeCollation` message.
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CollateOn(ParaId),
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/// Provide a collation to distribute to validators.
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DistributeCollation(CandidateReceipt, PoV),
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/// Fetch a collation under the given relay-parent for the given ParaId.
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FetchCollation(Hash, CollatorId, ParaId, oneshot::Sender<(CandidateReceipt, PoV)>),
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/// Report a collator as having provided an invalid collation. This should lead to disconnect
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/// and blacklist of the collator.
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ReportCollator(CollatorId),
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/// Note a collator as having provided a good collation.
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NoteGoodCollation(CollatorId),
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/// Get a network bridge update.
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NetworkBridgeUpdateV1(NetworkBridgeEvent<protocol_v1::CollatorProtocolMessage>),
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}
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impl CollatorProtocolMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::CollateOn(_) => None,
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Self::DistributeCollation(receipt, _) => Some(receipt.descriptor().relay_parent),
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Self::FetchCollation(relay_parent, _, _, _) => Some(*relay_parent),
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Self::ReportCollator(_) => None,
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Self::NoteGoodCollation(_) => None,
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Self::NetworkBridgeUpdateV1(_) => None,
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}
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}
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}
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/// Messages received by the network bridge subsystem.
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#[derive(Debug)]
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pub enum NetworkBridgeMessage {
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/// Report a peer for their actions.
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ReportPeer(PeerId, ReputationChange),
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/// Send a message to one or more peers on the validation peer-set.
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SendValidationMessage(Vec<PeerId>, protocol_v1::ValidationProtocol),
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/// Send a message to one or more peers on the collation peer-set.
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SendCollationMessage(Vec<PeerId>, protocol_v1::CollationProtocol),
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/// Connect to peers who represent the given `ValidatorId`s at the given relay-parent.
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///
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/// Also accepts a response channel by which the issuer can learn the `PeerId`s of those
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/// validators.
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ConnectToValidators(PeerSet, Vec<ValidatorId>, oneshot::Sender<Vec<(ValidatorId, PeerId)>>),
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}
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impl NetworkBridgeMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::ReportPeer(_, _) => None,
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Self::SendValidationMessage(_, _) => None,
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Self::SendCollationMessage(_, _) => None,
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Self::ConnectToValidators(_, _, _) => None,
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}
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}
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}
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/// Availability Distribution Message.
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#[derive(Debug)]
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pub enum AvailabilityDistributionMessage {
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/// Event from the network bridge.
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NetworkBridgeUpdateV1(NetworkBridgeEvent<protocol_v1::AvailabilityDistributionMessage>),
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}
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impl AvailabilityDistributionMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::NetworkBridgeUpdateV1(_) => None,
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}
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}
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}
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/// Bitfield distribution message.
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#[derive(Debug)]
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pub enum BitfieldDistributionMessage {
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/// Distribute a bitfield via gossip to other validators.
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DistributeBitfield(Hash, SignedAvailabilityBitfield),
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/// Event from the network bridge.
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NetworkBridgeUpdateV1(NetworkBridgeEvent<protocol_v1::BitfieldDistributionMessage>),
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}
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impl BitfieldDistributionMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::DistributeBitfield(hash, _) => Some(*hash),
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Self::NetworkBridgeUpdateV1(_) => None,
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}
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}
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}
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/// Bitfield signing message.
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///
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/// Currently non-instantiable.
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#[derive(Debug)]
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pub enum BitfieldSigningMessage {}
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impl BitfieldSigningMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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None
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}
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}
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/// Availability store subsystem message.
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#[derive(Debug)]
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pub enum AvailabilityStoreMessage {
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/// Query a `AvailableData` from the AV store.
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QueryAvailableData(Hash, oneshot::Sender<Option<AvailableData>>),
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/// Query whether a `AvailableData` exists within the AV Store.
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///
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/// This is useful in cases when existence
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/// matters, but we don't want to necessarily pass around multiple
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/// megabytes of data to get a single bit of information.
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QueryDataAvailability(Hash, oneshot::Sender<bool>),
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/// Query an `ErasureChunk` from the AV store by the candidate hash and validator index.
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QueryChunk(Hash, ValidatorIndex, oneshot::Sender<Option<ErasureChunk>>),
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/// Query whether an `ErasureChunk` exists within the AV Store.
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///
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/// This is useful in cases like bitfield signing, when existence
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/// matters, but we don't want to necessarily pass around large
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/// quantities of data to get a single bit of information.
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QueryChunkAvailability(Hash, ValidatorIndex, oneshot::Sender<bool>),
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/// Store an `ErasureChunk` in the AV store.
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///
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/// Return `Ok(())` if the store operation succeeded, `Err(())` if it failed.
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StoreChunk(Hash, ValidatorIndex, ErasureChunk, oneshot::Sender<Result<(), ()>>),
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/// Store a `AvailableData` in the AV store.
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/// If `ValidatorIndex` is present store corresponding chunk also.
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///
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/// Return `Ok(())` if the store operation succeeded, `Err(())` if it failed.
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StoreAvailableData(Hash, Option<ValidatorIndex>, u32, AvailableData, oneshot::Sender<Result<(), ()>>),
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}
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impl AvailabilityStoreMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::QueryAvailableData(hash, _) => Some(*hash),
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Self::QueryDataAvailability(hash, _) => Some(*hash),
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Self::QueryChunk(hash, _, _) => Some(*hash),
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Self::QueryChunkAvailability(hash, _, _) => Some(*hash),
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Self::StoreChunk(hash, _, _, _) => Some(*hash),
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Self::StoreAvailableData(hash, _, _, _, _) => Some(*hash),
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}
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}
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}
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/// A response channel for the result of a chain API request.
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pub type ChainApiResponseChannel<T> = oneshot::Sender<Result<T, crate::errors::ChainApiError>>;
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/// Chain API request subsystem message.
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#[derive(Debug)]
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pub enum ChainApiMessage {
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/// Request the block number by hash.
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/// Returns `None` if a block with the given hash is not present in the db.
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BlockNumber(Hash, ChainApiResponseChannel<Option<BlockNumber>>),
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/// Request the finalized block hash by number.
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/// Returns `None` if a block with the given number is not present in the db.
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/// Note: the caller must ensure the block is finalized.
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FinalizedBlockHash(BlockNumber, ChainApiResponseChannel<Option<Hash>>),
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/// Request the last finalized block number.
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/// This request always succeeds.
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FinalizedBlockNumber(ChainApiResponseChannel<BlockNumber>),
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/// Request the `k` ancestors block hashes of a block with the given hash.
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/// The response channel may return a `Vec` of size up to `k`
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/// filled with ancestors hashes with the following order:
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/// `parent`, `grandparent`, ...
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Ancestors {
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/// The hash of the block in question.
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hash: Hash,
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/// The number of ancestors to request.
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k: usize,
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/// The response channel.
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response_channel: ChainApiResponseChannel<Vec<Hash>>,
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},
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}
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impl ChainApiMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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None
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}
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}
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/// A sender for the result of a runtime API request.
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pub type RuntimeApiSender<T> = oneshot::Sender<Result<T, crate::errors::RuntimeApiError>>;
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/// A request to the Runtime API subsystem.
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#[derive(Debug)]
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pub enum RuntimeApiRequest {
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/// Get the current validator set.
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Validators(RuntimeApiSender<Vec<ValidatorId>>),
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/// Get the validator groups and group rotation info.
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ValidatorGroups(RuntimeApiSender<(Vec<Vec<ValidatorIndex>>, GroupRotationInfo)>),
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/// Get information on all availability cores.
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AvailabilityCores(RuntimeApiSender<Vec<CoreState>>),
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/// Get the persisted validation data for a particular para, taking the given
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/// `OccupiedCoreAssumption`, which will inform on how the validation data should be computed
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/// if the para currently occupies a core.
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PersistedValidationData(
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ParaId,
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OccupiedCoreAssumption,
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RuntimeApiSender<Option<PersistedValidationData>>,
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),
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/// Get the full validation data for a particular para, taking the given
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/// `OccupiedCoreAssumption`, which will inform on how the validation data should be computed
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/// if the para currently occupies a core.
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FullValidationData(
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ParaId,
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OccupiedCoreAssumption,
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RuntimeApiSender<Option<ValidationData>>,
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),
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/// Get the session index that a child of the block will have.
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SessionIndexForChild(RuntimeApiSender<SessionIndex>),
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/// Get the validation code for a para, taking the given `OccupiedCoreAssumption`, which
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/// will inform on how the validation data should be computed if the para currently
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/// occupies a core.
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ValidationCode(ParaId, OccupiedCoreAssumption, RuntimeApiSender<Option<ValidationCode>>),
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/// Get a the candidate pending availability for a particular parachain by parachain / core index
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CandidatePendingAvailability(ParaId, RuntimeApiSender<Option<CommittedCandidateReceipt>>),
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/// Get all events concerning candidates (backing, inclusion, time-out) in the parent of
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/// the block in whose state this request is executed.
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CandidateEvents(RuntimeApiSender<Vec<CandidateEvent>>),
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}
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/// A message to the Runtime API subsystem.
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#[derive(Debug)]
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pub enum RuntimeApiMessage {
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/// Make a request of the runtime API against the post-state of the given relay-parent.
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Request(Hash, RuntimeApiRequest),
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}
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impl RuntimeApiMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::Request(hash, _) => Some(*hash),
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}
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}
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}
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/// Statement distribution message.
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#[derive(Debug)]
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pub enum StatementDistributionMessage {
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/// We have originated a signed statement in the context of
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/// given relay-parent hash and it should be distributed to other validators.
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Share(Hash, SignedFullStatement),
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/// Event from the network bridge.
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NetworkBridgeUpdateV1(NetworkBridgeEvent<protocol_v1::StatementDistributionMessage>),
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/// Register a listener for shared statements.
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RegisterStatementListener(mpsc::Sender<SignedFullStatement>),
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}
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impl StatementDistributionMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::Share(hash, _) => Some(*hash),
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Self::NetworkBridgeUpdateV1(_) => None,
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Self::RegisterStatementListener(_) => None,
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}
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}
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}
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/// This data becomes intrinsics or extrinsics which should be included in a future relay chain block.
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// It needs to be cloneable because multiple potential block authors can request copies.
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#[derive(Debug, Clone)]
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pub enum ProvisionableData {
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/// This bitfield indicates the availability of various candidate blocks.
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Bitfield(Hash, SignedAvailabilityBitfield),
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/// The Candidate Backing subsystem believes that this candidate is valid, pending availability.
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BackedCandidate(BackedCandidate),
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/// Misbehavior reports are self-contained proofs of validator misbehavior.
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MisbehaviorReport(Hash, MisbehaviorReport),
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/// Disputes trigger a broad dispute resolution process.
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Dispute(Hash, ValidatorSignature),
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}
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/// This data needs to make its way from the provisioner into the InherentData.
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///
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/// There, it is used to construct the InclusionInherent.
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pub type ProvisionerInherentData = (Vec<SignedAvailabilityBitfield>, Vec<BackedCandidate>);
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/// Message to the Provisioner.
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///
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/// In all cases, the Hash is that of the relay parent.
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#[derive(Debug)]
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pub enum ProvisionerMessage {
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/// This message allows potential block authors to be kept updated with all new authorship data
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/// as it becomes available.
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RequestBlockAuthorshipData(Hash, mpsc::Sender<ProvisionableData>),
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/// This message allows external subsystems to request the set of bitfields and backed candidates
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/// associated with a particular potential block hash.
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///
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/// This is expected to be used by a proposer, to inject that information into the InherentData
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/// where it can be assembled into the InclusionInherent.
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RequestInherentData(Hash, oneshot::Sender<ProvisionerInherentData>),
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/// This data should become part of a relay chain block
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ProvisionableData(ProvisionableData),
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}
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impl ProvisionerMessage {
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/// If the current variant contains the relay parent hash, return it.
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pub fn relay_parent(&self) -> Option<Hash> {
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match self {
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Self::RequestBlockAuthorshipData(hash, _) => Some(*hash),
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Self::RequestInherentData(hash, _) => Some(*hash),
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Self::ProvisionableData(_) => None,
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}
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}
|
|
}
|
|
|
|
/// Message to the PoV Distribution Subsystem.
|
|
#[derive(Debug)]
|
|
pub enum PoVDistributionMessage {
|
|
/// Fetch a PoV from the network.
|
|
///
|
|
/// This `CandidateDescriptor` should correspond to a candidate seconded under the provided
|
|
/// relay-parent hash.
|
|
FetchPoV(Hash, CandidateDescriptor, oneshot::Sender<Arc<PoV>>),
|
|
/// Distribute a PoV for the given relay-parent and CandidateDescriptor.
|
|
/// The PoV should correctly hash to the PoV hash mentioned in the CandidateDescriptor
|
|
DistributePoV(Hash, CandidateDescriptor, Arc<PoV>),
|
|
/// An update from the network bridge.
|
|
NetworkBridgeUpdateV1(NetworkBridgeEvent<protocol_v1::PoVDistributionMessage>),
|
|
}
|
|
|
|
impl PoVDistributionMessage {
|
|
/// If the current variant contains the relay parent hash, return it.
|
|
pub fn relay_parent(&self) -> Option<Hash> {
|
|
match self {
|
|
Self::FetchPoV(hash, _, _) => Some(*hash),
|
|
Self::DistributePoV(hash, _, _) => Some(*hash),
|
|
Self::NetworkBridgeUpdateV1(_) => None,
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Message to the Collation Generation Subsystem.
|
|
#[derive(Debug)]
|
|
pub enum CollationGenerationMessage {
|
|
/// Initialize the collation generation subsystem
|
|
Initialize(CollationGenerationConfig),
|
|
}
|
|
|
|
impl CollationGenerationMessage {
|
|
/// If the current variant contains the relay parent hash, return it.
|
|
pub fn relay_parent(&self) -> Option<Hash> {
|
|
None
|
|
}
|
|
}
|
|
|
|
/// A message type tying together all message types that are used across Subsystems.
|
|
#[derive(Debug)]
|
|
pub enum AllMessages {
|
|
/// Message for the validation subsystem.
|
|
CandidateValidation(CandidateValidationMessage),
|
|
/// Message for the candidate backing subsystem.
|
|
CandidateBacking(CandidateBackingMessage),
|
|
/// Message for the candidate selection subsystem.
|
|
CandidateSelection(CandidateSelectionMessage),
|
|
/// Message for the Chain API subsystem.
|
|
ChainApi(ChainApiMessage),
|
|
/// Message for the Collator Protocol subsystem.
|
|
CollatorProtocol(CollatorProtocolMessage),
|
|
/// Message for the statement distribution subsystem.
|
|
StatementDistribution(StatementDistributionMessage),
|
|
/// Message for the availability distribution subsystem.
|
|
AvailabilityDistribution(AvailabilityDistributionMessage),
|
|
/// Message for the bitfield distribution subsystem.
|
|
BitfieldDistribution(BitfieldDistributionMessage),
|
|
/// Message for the bitfield signing subsystem.
|
|
BitfieldSigning(BitfieldSigningMessage),
|
|
/// Message for the Provisioner subsystem.
|
|
Provisioner(ProvisionerMessage),
|
|
/// Message for the PoV Distribution subsystem.
|
|
PoVDistribution(PoVDistributionMessage),
|
|
/// Message for the Runtime API subsystem.
|
|
RuntimeApi(RuntimeApiMessage),
|
|
/// Message for the availability store subsystem.
|
|
AvailabilityStore(AvailabilityStoreMessage),
|
|
/// Message for the network bridge subsystem.
|
|
NetworkBridge(NetworkBridgeMessage),
|
|
/// Message for the Collation Generation subsystem
|
|
CollationGeneration(CollationGenerationMessage),
|
|
}
|