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.
222 lines
6.0 KiB
Rust
222 lines
6.0 KiB
Rust
// This file is part of Bizinikiwi.
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// Copyright (C) Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// This program 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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// This program 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 this program. If not, see <https://www.gnu.org/licenses/>.
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use async_trait::async_trait;
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use codec::Encode;
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use criterion::{criterion_group, criterion_main, Criterion};
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use futures::executor::block_on;
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use pezsc_transaction_pool::*;
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use pezsp_blockchain::HashAndNumber;
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use pezsp_crypto_hashing::blake2_256;
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use pezsp_runtime::{
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generic::BlockId,
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traits::{Block as BlockT, NumberFor},
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transaction_validity::{
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InvalidTransaction, TransactionSource, TransactionTag as Tag, TransactionValidity,
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ValidTransaction,
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},
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};
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use std::sync::Arc;
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use bizinikiwi_test_runtime::{AccountId, Block, Extrinsic, ExtrinsicBuilder, TransferData, H256};
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#[derive(Clone, Debug, Default)]
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struct TestApi {
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nonce_dependant: bool,
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}
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impl TestApi {
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fn new_dependant() -> Self {
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TestApi { nonce_dependant: true }
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}
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}
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fn to_tag(nonce: u64, from: AccountId) -> Tag {
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let mut data = [0u8; 40];
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data[..8].copy_from_slice(&nonce.to_le_bytes()[..]);
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data[8..].copy_from_slice(&from.0[..]);
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data.to_vec()
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}
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#[async_trait]
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impl ChainApi for TestApi {
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type Block = Block;
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type Error = pezsc_transaction_pool_api::error::Error;
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async fn validate_transaction(
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&self,
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at: <Self::Block as BlockT>::Hash,
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_: TransactionSource,
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uxt: Arc<<Self::Block as BlockT>::Extrinsic>,
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_: ValidateTransactionPriority,
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) -> Result<TransactionValidity, Self::Error> {
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let uxt = (*uxt).clone();
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let transfer = TransferData::try_from(&uxt)
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.expect("uxt is expected to be bench_call (carrying TransferData)");
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let nonce = transfer.nonce;
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let from = transfer.from;
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match self.block_id_to_number(&BlockId::Hash(at)) {
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Ok(Some(num)) if num > 5 => return Ok(Err(InvalidTransaction::Stale.into())),
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_ => {},
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}
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Ok(Ok(ValidTransaction {
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priority: 4,
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requires: if nonce > 1 && self.nonce_dependant {
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vec![to_tag(nonce - 1, from)]
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} else {
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vec![]
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},
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provides: vec![to_tag(nonce, from)],
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longevity: 10,
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propagate: true,
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}))
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}
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fn validate_transaction_blocking(
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&self,
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_at: <Self::Block as BlockT>::Hash,
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_source: TransactionSource,
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_uxt: Arc<<Self::Block as BlockT>::Extrinsic>,
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) -> Result<TransactionValidity, Self::Error> {
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unimplemented!();
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}
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fn block_id_to_number(
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&self,
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at: &BlockId<Self::Block>,
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) -> Result<Option<NumberFor<Self::Block>>, Self::Error> {
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Ok(match at {
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BlockId::Number(num) => Some(*num),
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BlockId::Hash(hash) if *hash == H256::from_low_u64_be(hash.to_low_u64_be()) =>
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Some(hash.to_low_u64_be()),
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BlockId::Hash(_) => None,
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})
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}
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fn block_id_to_hash(
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&self,
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at: &BlockId<Self::Block>,
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) -> Result<Option<<Self::Block as BlockT>::Hash>, Self::Error> {
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Ok(match at {
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BlockId::Number(num) => Some(H256::from_low_u64_be(*num)).into(),
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BlockId::Hash(hash) => Some(*hash),
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})
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}
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fn hash_and_length(&self, uxt: &<Self::Block as BlockT>::Extrinsic) -> (H256, usize) {
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let encoded = uxt.encode();
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(blake2_256(&encoded).into(), encoded.len())
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}
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async fn block_body(
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&self,
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_id: <Self::Block as BlockT>::Hash,
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) -> Result<Option<Vec<<Self::Block as BlockT>::Extrinsic>>, Self::Error> {
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Ok(None)
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}
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fn block_header(
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&self,
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_: <Self::Block as BlockT>::Hash,
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) -> Result<Option<<Self::Block as BlockT>::Header>, Self::Error> {
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Ok(None)
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}
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fn tree_route(
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&self,
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_from: <Self::Block as BlockT>::Hash,
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_to: <Self::Block as BlockT>::Hash,
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) -> Result<pezsp_blockchain::TreeRoute<Self::Block>, Self::Error> {
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unimplemented!()
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}
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}
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fn uxt(transfer: TransferData) -> Extrinsic {
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ExtrinsicBuilder::new_bench_call(transfer).build()
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}
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fn bench_configured(pool: Pool<TestApi, ()>, number: u64, api: Arc<TestApi>) {
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let source = TimedTransactionSource::new_external(false);
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let mut futures = Vec::new();
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let mut tags = Vec::new();
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let at = HashAndNumber {
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hash: api.block_id_to_hash(&BlockId::Number(1)).unwrap().unwrap(),
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number: 1,
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};
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for nonce in 1..=number {
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let xt = uxt(TransferData {
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from: AccountId::from_h256(H256::from_low_u64_be(1)),
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to: AccountId::from_h256(H256::from_low_u64_be(2)),
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amount: 5,
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nonce,
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})
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.into();
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tags.push(to_tag(nonce, AccountId::from_h256(H256::from_low_u64_be(1))));
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futures.push(pool.submit_one(&at, source.clone(), xt));
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}
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let res = block_on(futures::future::join_all(futures.into_iter()));
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assert!(res.iter().all(Result::is_ok));
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assert_eq!(pool.validated_pool().status().future, 0);
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assert_eq!(pool.validated_pool().status().ready, number as usize);
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// Prune all transactions.
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let block_num = 6;
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let at = HashAndNumber {
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hash: api.block_id_to_hash(&BlockId::Number(block_num)).unwrap().unwrap(),
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number: block_num,
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};
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block_on(pool.prune_tags(&at, tags, vec![]));
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// pool is empty
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assert_eq!(pool.validated_pool().status().ready, 0);
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assert_eq!(pool.validated_pool().status().future, 0);
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}
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fn benchmark_main(c: &mut Criterion) {
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c.bench_function("sequential 50 tx", |b| {
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b.iter(|| {
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let api = Arc::from(TestApi::new_dependant());
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bench_configured(
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Pool::new_with_staticly_sized_rotator(Default::default(), true.into(), api.clone()),
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50,
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api,
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);
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});
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});
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c.bench_function("random 100 tx", |b| {
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b.iter(|| {
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let api = Arc::from(TestApi::default());
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bench_configured(
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Pool::new_with_staticly_sized_rotator(Default::default(), true.into(), api.clone()),
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100,
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api,
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);
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});
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});
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}
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criterion_group!(benches, benchmark_main);
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criterion_main!(benches);
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