1c0e57d984
This commit systematically rebrands various references from Parity Technologies' Polkadot/Substrate ecosystem to PezkuwiChain within the kurdistan-sdk. Key changes include: - Updated external repository URLs (zombienet-sdk, parity-db, parity-scale-codec, wasm-instrument) to point to pezkuwichain forks. - Modified internal documentation and code comments to reflect PezkuwiChain naming and structure. - Replaced direct references to with or specific paths within the for XCM, Pezkuwi, and other modules. - Cleaned up deprecated issue and PR references in various and files, particularly in and modules. - Adjusted image and logo URLs in documentation to point to PezkuwiChain assets. - Removed or rephrased comments related to external Polkadot/Substrate PRs and issues. This is a significant step towards fully customizing the SDK for the PezkuwiChain ecosystem.
278 lines
9.3 KiB
Rust
278 lines
9.3 KiB
Rust
// Copyright (C) Parity Technologies (UK) Ltd.
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// This file is part of Pezcumulus.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// Pezcumulus 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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// Pezcumulus 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 Pezcumulus. If not, see <https://www.gnu.org/licenses/>.
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//! This provides the option to run a basic relay-chain driven Aura implementation.
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//!
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//! This collator only builds on top of the most recently included block, limiting the
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//! block time to a maximum of two times the relay-chain block time, and requiring the
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//! block to be built and distributed to validators between two relay-chain blocks.
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//!
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//! For more information about AuRa, the Bizinikiwi crate should be checked.
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use codec::{Codec, Decode};
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use cumulus_client_collator::{
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relay_chain_driven::CollationRequest, service::ServiceInterface as CollatorServiceInterface,
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};
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use cumulus_client_consensus_common::TeyrchainBlockImportMarker;
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use cumulus_client_consensus_proposer::ProposerInterface;
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use cumulus_primitives_core::{relay_chain::BlockId as RBlockId, CollectCollationInfo};
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use cumulus_relay_chain_interface::RelayChainInterface;
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use pezkuwi_node_primitives::CollationResult;
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use pezkuwi_overseer::Handle as OverseerHandle;
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use pezkuwi_primitives::{CollatorPair, Id as ParaId, ValidationCode};
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use futures::{channel::mpsc::Receiver, prelude::*};
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use pezsc_client_api::{backend::AuxStore, BlockBackend, BlockOf};
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use pezsc_consensus::BlockImport;
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use pezsc_network_types::PeerId;
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use pezsp_api::{CallApiAt, ProvideRuntimeApi};
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use pezsp_application_crypto::AppPublic;
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use pezsp_blockchain::HeaderBackend;
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use pezsp_consensus_aura::AuraApi;
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use pezsp_core::crypto::Pair;
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use pezsp_inherents::CreateInherentDataProviders;
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use pezsp_keystore::KeystorePtr;
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use pezsp_runtime::traits::{Block as BlockT, Header as HeaderT, Member};
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use pezsp_state_machine::Backend as _;
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use std::{sync::Arc, time::Duration};
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use crate::collator as collator_util;
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/// Parameters for [`run`].
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pub struct Params<BI, CIDP, Client, RClient, Proposer, CS> {
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/// Inherent data providers. Only non-consensus inherent data should be provided, i.e.
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/// the timestamp, slot, and paras inherents should be omitted, as they are set by this
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/// collator.
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pub create_inherent_data_providers: CIDP,
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/// Used to actually import blocks.
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pub block_import: BI,
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/// The underlying para client.
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pub para_client: Arc<Client>,
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/// A handle to the relay-chain client.
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pub relay_client: RClient,
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/// The underlying keystore, which should contain Aura consensus keys.
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pub keystore: KeystorePtr,
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/// The collator key used to sign collations before submitting to validators.
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pub collator_key: CollatorPair,
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/// The collator network peer id.
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pub collator_peer_id: PeerId,
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/// The para's ID.
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pub para_id: ParaId,
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/// A handle to the relay-chain client's "Overseer" or task orchestrator.
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pub overseer_handle: OverseerHandle,
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/// The length of slots in the relay chain.
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pub relay_chain_slot_duration: Duration,
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/// The underlying block proposer this should call into.
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pub proposer: Proposer,
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/// The generic collator service used to plug into this consensus engine.
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pub collator_service: CS,
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/// The amount of time to spend authoring each block.
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pub authoring_duration: Duration,
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/// Receiver for collation requests. If `None`, Aura consensus will establish a new receiver.
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/// Should be used when a chain migrates from a different consensus algorithm and was already
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/// processing collation requests before initializing Aura.
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pub collation_request_receiver: Option<Receiver<CollationRequest>>,
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}
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/// Run bare Aura consensus as a relay-chain-driven collator.
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pub fn run<Block, P, BI, CIDP, Client, RClient, Proposer, CS>(
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params: Params<BI, CIDP, Client, RClient, Proposer, CS>,
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) -> impl Future<Output = ()> + Send + 'static
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where
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Block: BlockT + Send,
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Client: ProvideRuntimeApi<Block>
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+ BlockOf
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+ AuxStore
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+ HeaderBackend<Block>
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+ BlockBackend<Block>
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+ CallApiAt<Block>
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+ Send
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+ Sync
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+ 'static,
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Client::Api: AuraApi<Block, P::Public> + CollectCollationInfo<Block>,
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RClient: RelayChainInterface + Send + Clone + 'static,
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CIDP: CreateInherentDataProviders<Block, ()> + Send + 'static,
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CIDP::InherentDataProviders: Send,
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BI: BlockImport<Block> + TeyrchainBlockImportMarker + Send + Sync + 'static,
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Proposer: ProposerInterface<Block> + Send + Sync + 'static,
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CS: CollatorServiceInterface<Block> + Send + Sync + 'static,
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P: Pair,
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P::Public: AppPublic + Member + Codec,
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P::Signature: TryFrom<Vec<u8>> + Member + Codec,
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{
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async move {
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let mut collation_requests = match params.collation_request_receiver {
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Some(receiver) => receiver,
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None =>
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cumulus_client_collator::relay_chain_driven::init(
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params.collator_key,
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params.para_id,
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params.overseer_handle,
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)
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.await,
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};
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let mut collator = {
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let params = collator_util::Params {
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create_inherent_data_providers: params.create_inherent_data_providers,
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block_import: params.block_import,
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relay_client: params.relay_client.clone(),
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keystore: params.keystore.clone(),
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collator_peer_id: params.collator_peer_id,
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para_id: params.para_id,
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proposer: params.proposer,
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collator_service: params.collator_service,
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};
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collator_util::Collator::<Block, P, _, _, _, _, _>::new(params)
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};
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let mut last_processed_slot = 0;
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let mut last_relay_chain_block = Default::default();
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while let Some(request) = collation_requests.next().await {
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macro_rules! reject_with_error {
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($err:expr) => {{
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request.complete(None);
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tracing::error!(target: crate::LOG_TARGET, err = ?{ $err });
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continue;
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}};
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}
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macro_rules! try_request {
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($x:expr) => {{
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match $x {
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Ok(x) => x,
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Err(e) => reject_with_error!(e),
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}
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}};
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}
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let validation_data = request.persisted_validation_data();
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let parent_header =
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try_request!(Block::Header::decode(&mut &validation_data.parent_head.0[..]));
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let parent_hash = parent_header.hash();
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if !collator.collator_service().check_block_status(parent_hash, &parent_header) {
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continue;
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}
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let Ok(Some(code)) =
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params.para_client.state_at(parent_hash).map_err(drop).and_then(|s| {
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s.storage(&pezsp_core::storage::well_known_keys::CODE).map_err(drop)
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})
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else {
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continue;
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};
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super::check_validation_code_or_log(
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&ValidationCode::from(code).hash(),
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params.para_id,
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¶ms.relay_client,
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*request.relay_parent(),
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)
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.await;
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let relay_parent_header =
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match params.relay_client.header(RBlockId::hash(*request.relay_parent())).await {
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Err(e) => reject_with_error!(e),
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Ok(None) => continue, // sanity: would be inconsistent to get `None` here
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Ok(Some(h)) => h,
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};
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let slot_duration = match params.para_client.runtime_api().slot_duration(parent_hash) {
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Ok(d) => d,
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Err(e) => reject_with_error!(e),
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};
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let claim = match collator_util::claim_slot::<_, _, P>(
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&*params.para_client,
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parent_hash,
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&relay_parent_header,
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slot_duration,
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params.relay_chain_slot_duration,
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¶ms.keystore,
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)
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.await
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{
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Ok(None) => continue,
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Ok(Some(c)) => c,
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Err(e) => reject_with_error!(e),
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};
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// With async backing this function will be called every relay chain block.
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//
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// Most teyrchains currently run with 12 seconds slots and thus, they would try to
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// produce multiple blocks per slot which very likely would fail on chain. Thus, we have
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// this "hack" to only produce one block per slot per relay chain fork.
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//
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// With https://github.com/pezkuwichain/pezkuwi-sdk/issues/127 this implementation will be
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// obsolete and also the underlying issue will be fixed.
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if last_processed_slot >= *claim.slot() &&
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last_relay_chain_block < *relay_parent_header.number()
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{
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continue;
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}
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let (teyrchain_inherent_data, other_inherent_data) = try_request!(
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collator
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.create_inherent_data(
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*request.relay_parent(),
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&validation_data,
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parent_hash,
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claim.timestamp(),
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params.collator_peer_id,
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)
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.await
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);
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let allowed_pov_size = (validation_data.max_pov_size / 2) as usize;
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let maybe_collation = try_request!(
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collator
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.collate(
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&parent_header,
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&claim,
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None,
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(teyrchain_inherent_data, other_inherent_data),
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params.authoring_duration,
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allowed_pov_size,
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)
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.await
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);
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if let Some((collation, block_data)) = maybe_collation {
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let Some(block_hash) = block_data.blocks().first().map(|b| b.hash()) else {
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continue;
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};
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let result_sender =
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Some(collator.collator_service().announce_with_barrier(block_hash));
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request.complete(Some(CollationResult { collation, result_sender }));
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} else {
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request.complete(None);
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tracing::debug!(target: crate::LOG_TARGET, "No block proposal");
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}
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last_processed_slot = *claim.slot();
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last_relay_chain_block = *relay_parent_header.number();
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}
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}
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}
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