mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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db86094b03
* make sure return ready iterator once state is updated * update sc_basic_authorship tests * update node tests * fix manual seal * actually fix service test * add tests * Update client/basic-authorship/src/basic_authorship.rs Co-Authored-By: Tomasz Drwięga <tomusdrw@users.noreply.github.com> * helper function * review suggestions * warning and continue * add debug log * use futures::chennel::oneshot * use declaration bound * no option for updated_at * no allocation * ready_at / ready * Update client/transaction-pool/src/lib.rs Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com> * Update client/transaction-pool/src/lib.rs Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com> * Update client/transaction-pool/src/lib.rs Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com> * Update client/transaction-pool/src/lib.rs Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com> * Update client/transaction-pool/src/lib.rs Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com> * Update client/transaction-pool/src/lib.rs Co-Authored-By: Bastian Köcher <bkchr@users.noreply.github.com> Co-authored-by: Tomasz Drwięga <tomusdrw@users.noreply.github.com> Co-authored-by: Bastian Köcher <bkchr@users.noreply.github.com>
469 lines
14 KiB
Rust
469 lines
14 KiB
Rust
// Copyright 2020 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Substrate is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Substrate. If not, see <http://www.gnu.org/licenses/>.
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//! A manual sealing engine: the engine listens for rpc calls to seal blocks and create forks.
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//! This is suitable for a testing environment.
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use sp_consensus::{
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self, BlockImport, Environment, Proposer, BlockCheckParams,
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ForkChoiceStrategy, BlockImportParams, BlockOrigin,
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ImportResult, SelectChain,
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import_queue::{
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BasicQueue,
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CacheKeyId,
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Verifier,
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BoxBlockImport,
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},
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};
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use sp_inherents::InherentDataProviders;
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use sp_runtime::{traits::Block as BlockT, Justification};
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use sc_client_api::backend::Backend as ClientBackend;
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use futures::prelude::*;
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use sc_transaction_pool::txpool;
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use std::collections::HashMap;
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use std::sync::Arc;
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pub mod rpc;
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mod error;
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mod finalize_block;
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mod seal_new_block;
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use finalize_block::{finalize_block, FinalizeBlockParams};
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use seal_new_block::{seal_new_block, SealBlockParams};
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pub use error::Error;
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pub use rpc::{EngineCommand, CreatedBlock};
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/// The synchronous block-import worker of the engine.
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pub struct ManualSealBlockImport<I> {
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inner: I,
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}
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impl<I> From<I> for ManualSealBlockImport<I> {
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fn from(i: I) -> Self {
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ManualSealBlockImport { inner: i }
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}
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}
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impl<B, I> BlockImport<B> for ManualSealBlockImport<I>
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where
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B: BlockT,
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I: BlockImport<B, Transaction = ()>,
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{
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type Error = I::Error;
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type Transaction = ();
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fn check_block(&mut self, block: BlockCheckParams<B>) -> Result<ImportResult, Self::Error>
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{
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self.inner.check_block(block)
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}
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fn import_block(
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&mut self,
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block: BlockImportParams<B, Self::Transaction>,
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cache: HashMap<CacheKeyId, Vec<u8>>,
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) -> Result<ImportResult, Self::Error> {
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self.inner.import_block(block, cache)
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}
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}
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/// The verifier for the manual seal engine; instantly finalizes.
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struct ManualSealVerifier;
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impl<B: BlockT> Verifier<B> for ManualSealVerifier {
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fn verify(
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&mut self,
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origin: BlockOrigin,
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header: B::Header,
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justification: Option<Justification>,
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body: Option<Vec<B::Extrinsic>>,
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) -> Result<(BlockImportParams<B, ()>, Option<Vec<(CacheKeyId, Vec<u8>)>>), String> {
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let mut import_params = BlockImportParams::new(origin, header);
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import_params.justification = justification;
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import_params.body = body;
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import_params.finalized = true;
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import_params.fork_choice = Some(ForkChoiceStrategy::LongestChain);
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Ok((import_params, None))
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}
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}
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/// Instantiate the import queue for the manual seal consensus engine.
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pub fn import_queue<B: BlockT>(block_import: BoxBlockImport<B, ()>) -> BasicQueue<B, ()>
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{
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BasicQueue::new(
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ManualSealVerifier,
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block_import,
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None,
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None,
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)
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}
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/// Creates the background authorship task for the manual seal engine.
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pub async fn run_manual_seal<B, CB, E, A, C, S, T>(
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mut block_import: BoxBlockImport<B, T>,
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mut env: E,
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backend: Arc<CB>,
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pool: Arc<txpool::Pool<A>>,
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mut seal_block_channel: S,
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select_chain: C,
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inherent_data_providers: InherentDataProviders,
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)
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where
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B: BlockT + 'static,
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CB: ClientBackend<B> + 'static,
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E: Environment<B> + 'static,
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E::Error: std::fmt::Display,
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<E::Proposer as Proposer<B>>::Error: std::fmt::Display,
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A: txpool::ChainApi<Block=B, Hash=<B as BlockT>::Hash> + 'static,
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S: Stream<Item=EngineCommand<<B as BlockT>::Hash>> + Unpin + 'static,
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C: SelectChain<B> + 'static,
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{
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while let Some(command) = seal_block_channel.next().await {
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match command {
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EngineCommand::SealNewBlock {
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create_empty,
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finalize,
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parent_hash,
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sender,
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} => {
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seal_new_block(
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SealBlockParams {
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sender,
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parent_hash,
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finalize,
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create_empty,
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env: &mut env,
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select_chain: &select_chain,
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block_import: &mut block_import,
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inherent_data_provider: &inherent_data_providers,
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pool: pool.clone(),
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backend: backend.clone(),
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}
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).await;
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}
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EngineCommand::FinalizeBlock { hash, sender, justification } => {
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finalize_block(
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FinalizeBlockParams {
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hash,
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sender,
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justification,
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backend: backend.clone(),
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}
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).await
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}
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}
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}
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}
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/// runs the background authorship task for the instant seal engine.
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/// instant-seal creates a new block for every transaction imported into
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/// the transaction pool.
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pub async fn run_instant_seal<B, CB, E, A, C, T>(
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block_import: BoxBlockImport<B, T>,
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env: E,
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backend: Arc<CB>,
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pool: Arc<txpool::Pool<A>>,
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select_chain: C,
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inherent_data_providers: InherentDataProviders,
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)
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where
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A: txpool::ChainApi<Block=B, Hash=<B as BlockT>::Hash> + 'static,
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B: BlockT + 'static,
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CB: ClientBackend<B> + 'static,
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E: Environment<B> + 'static,
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E::Error: std::fmt::Display,
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<E::Proposer as Proposer<B>>::Error: std::fmt::Display,
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C: SelectChain<B> + 'static
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{
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// instant-seal creates blocks as soon as transactions are imported
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// into the transaction pool.
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let seal_block_channel = pool.validated_pool().import_notification_stream()
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.map(|_| {
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EngineCommand::SealNewBlock {
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create_empty: false,
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finalize: false,
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parent_hash: None,
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sender: None,
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}
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});
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run_manual_seal(
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block_import,
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env,
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backend,
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pool,
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seal_block_channel,
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select_chain,
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inherent_data_providers,
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).await
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use substrate_test_runtime_client::{
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DefaultTestClientBuilderExt,
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TestClientBuilderExt,
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AccountKeyring::*,
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TestClientBuilder,
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};
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use sc_transaction_pool::{
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BasicPool,
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txpool::Options,
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};
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use substrate_test_runtime_transaction_pool::{TestApi, uxt};
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use sp_transaction_pool::{TransactionPool, MaintainedTransactionPool};
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use sp_runtime::generic::BlockId;
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use sp_blockchain::HeaderBackend;
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use sp_consensus::ImportedAux;
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use sc_client::LongestChain;
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use sp_inherents::InherentDataProviders;
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use sc_basic_authorship::ProposerFactory;
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fn api() -> Arc<TestApi> {
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Arc::new(TestApi::empty())
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}
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#[tokio::test]
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async fn instant_seal() {
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let builder = TestClientBuilder::new();
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let backend = builder.backend();
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let client = Arc::new(builder.build());
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let select_chain = LongestChain::new(backend.clone());
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let inherent_data_providers = InherentDataProviders::new();
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let pool = Arc::new(BasicPool::new(Options::default(), api()).0);
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let env = ProposerFactory::new(
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client.clone(),
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pool.clone()
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);
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// this test checks that blocks are created as soon as transactions are imported into the pool.
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let (sender, receiver) = futures::channel::oneshot::channel();
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let mut sender = Arc::new(Some(sender));
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let stream = pool.pool().validated_pool().import_notification_stream()
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.map(move |_| {
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// we're only going to submit one tx so this fn will only be called once.
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let mut_sender = Arc::get_mut(&mut sender).unwrap();
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let sender = std::mem::replace(mut_sender, None);
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EngineCommand::SealNewBlock {
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create_empty: false,
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finalize: true,
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parent_hash: None,
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sender
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}
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});
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let future = run_manual_seal(
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Box::new(client.clone()),
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env,
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backend.clone(),
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pool.pool().clone(),
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stream,
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select_chain,
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inherent_data_providers,
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);
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std::thread::spawn(|| {
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let mut rt = tokio::runtime::Runtime::new().unwrap();
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// spawn the background authorship task
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rt.block_on(future);
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});
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// submit a transaction to pool.
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let result = pool.submit_one(&BlockId::Number(0), uxt(Alice, 0)).await;
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// assert that it was successfully imported
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assert!(result.is_ok());
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// assert that the background task returns ok
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let created_block = receiver.await.unwrap().unwrap();
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assert_eq!(
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created_block,
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CreatedBlock {
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hash: created_block.hash.clone(),
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aux: ImportedAux {
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header_only: false,
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clear_justification_requests: false,
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needs_justification: false,
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bad_justification: false,
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needs_finality_proof: false,
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is_new_best: true,
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}
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}
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);
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// assert that there's a new block in the db.
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assert!(backend.blockchain().header(BlockId::Number(1)).unwrap().is_some())
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}
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#[tokio::test]
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async fn manual_seal_and_finalization() {
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let builder = TestClientBuilder::new();
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let backend = builder.backend();
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let client = Arc::new(builder.build());
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let select_chain = LongestChain::new(backend.clone());
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let inherent_data_providers = InherentDataProviders::new();
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let pool = Arc::new(BasicPool::new(Options::default(), api()).0);
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let env = ProposerFactory::new(
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client.clone(),
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pool.clone()
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);
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// this test checks that blocks are created as soon as an engine command is sent over the stream.
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let (mut sink, stream) = futures::channel::mpsc::channel(1024);
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let future = run_manual_seal(
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Box::new(client.clone()),
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env,
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backend.clone(),
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pool.pool().clone(),
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stream,
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select_chain,
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inherent_data_providers,
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);
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std::thread::spawn(|| {
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let mut rt = tokio::runtime::Runtime::new().unwrap();
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// spawn the background authorship task
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rt.block_on(future);
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});
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// submit a transaction to pool.
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let result = pool.submit_one(&BlockId::Number(0), uxt(Alice, 0)).await;
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// assert that it was successfully imported
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assert!(result.is_ok());
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let (tx, rx) = futures::channel::oneshot::channel();
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sink.send(EngineCommand::SealNewBlock {
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parent_hash: None,
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sender: Some(tx),
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create_empty: false,
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finalize: false,
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}).await.unwrap();
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let created_block = rx.await.unwrap().unwrap();
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// assert that the background task returns ok
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assert_eq!(
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created_block,
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CreatedBlock {
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hash: created_block.hash.clone(),
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aux: ImportedAux {
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header_only: false,
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clear_justification_requests: false,
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needs_justification: false,
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bad_justification: false,
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needs_finality_proof: false,
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is_new_best: true,
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}
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}
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);
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// assert that there's a new block in the db.
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let header = backend.blockchain().header(BlockId::Number(1)).unwrap().unwrap();
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let (tx, rx) = futures::channel::oneshot::channel();
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sink.send(EngineCommand::FinalizeBlock {
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sender: Some(tx),
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hash: header.hash(),
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justification: None
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}).await.unwrap();
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// assert that the background task returns ok
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assert_eq!(rx.await.unwrap().unwrap(), ());
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}
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#[tokio::test]
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async fn manual_seal_fork_blocks() {
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let builder = TestClientBuilder::new();
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let backend = builder.backend();
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let client = Arc::new(builder.build());
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let select_chain = LongestChain::new(backend.clone());
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let inherent_data_providers = InherentDataProviders::new();
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let pool_api = api();
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let pool = Arc::new(BasicPool::new(Options::default(), pool_api.clone()).0);
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let env = ProposerFactory::new(
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client.clone(),
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pool.clone(),
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);
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// this test checks that blocks are created as soon as an engine command is sent over the stream.
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let (mut sink, stream) = futures::channel::mpsc::channel(1024);
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let future = run_manual_seal(
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Box::new(client.clone()),
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env,
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backend.clone(),
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pool.pool().clone(),
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stream,
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select_chain,
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inherent_data_providers,
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);
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std::thread::spawn(|| {
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let mut rt = tokio::runtime::Runtime::new().unwrap();
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// spawn the background authorship task
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rt.block_on(future);
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});
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// submit a transaction to pool.
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let result = pool.submit_one(&BlockId::Number(0), uxt(Alice, 0)).await;
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// assert that it was successfully imported
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assert!(result.is_ok());
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let (tx, rx) = futures::channel::oneshot::channel();
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sink.send(EngineCommand::SealNewBlock {
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parent_hash: None,
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sender: Some(tx),
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create_empty: false,
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finalize: false,
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}).await.unwrap();
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let created_block = rx.await.unwrap().unwrap();
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pool_api.increment_nonce(Alice.into());
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// assert that the background task returns ok
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assert_eq!(
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created_block,
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CreatedBlock {
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hash: created_block.hash.clone(),
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aux: ImportedAux {
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header_only: false,
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clear_justification_requests: false,
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needs_justification: false,
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bad_justification: false,
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needs_finality_proof: false,
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is_new_best: true
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}
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}
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);
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// assert that there's a new block in the db.
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assert!(backend.blockchain().header(BlockId::Number(0)).unwrap().is_some());
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assert!(pool.submit_one(&BlockId::Number(1), uxt(Alice, 1)).await.is_ok());
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pool.maintain(sp_transaction_pool::ChainEvent::NewBlock {
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id: BlockId::Number(1),
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header: backend.blockchain().header(BlockId::Number(1)).expect("db error").expect("imported above"),
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is_new_best: true,
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retracted: vec![],
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}).await;
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let (tx1, rx1) = futures::channel::oneshot::channel();
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assert!(sink.send(EngineCommand::SealNewBlock {
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parent_hash: Some(created_block.hash),
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sender: Some(tx1),
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create_empty: false,
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finalize: false,
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}).await.is_ok());
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assert_matches::assert_matches!(
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rx1.await.expect("should be no error receiving"),
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Ok(_)
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);
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assert!(backend.blockchain().header(BlockId::Number(1)).unwrap().is_some());
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pool_api.increment_nonce(Alice.into());
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assert!(pool.submit_one(&BlockId::Number(2), uxt(Alice, 2)).await.is_ok());
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let (tx2, rx2) = futures::channel::oneshot::channel();
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assert!(sink.send(EngineCommand::SealNewBlock {
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parent_hash: Some(created_block.hash),
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sender: Some(tx2),
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create_empty: false,
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finalize: false,
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}).await.is_ok());
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let imported = rx2.await.unwrap().unwrap();
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// assert that fork block is in the db
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assert!(backend.blockchain().header(BlockId::Hash(imported.hash)).unwrap().is_some())
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}
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}
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