314 lines
8.4 KiB
Rust
314 lines
8.4 KiB
Rust
// Copyright (C) Parity Technologies (UK) Ltd.
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// This file is part of Parity Bridges Common.
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// Parity Bridges Common 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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// Parity Bridges Common 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 Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
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use bp_header_pez_chain::ChainWithGrandpa;
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use bp_pezkuwi_core::teyrchains::ParaId;
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use pezbp_runtime::{Chain, ChainId, Teyrchain};
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use pezframe_support::{
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construct_runtime, derive_impl, parameter_types, traits::ConstU32, weights::Weight,
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};
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use pezsp_runtime::{
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testing::H256,
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traits::{BlakeTwo256, Header as HeaderT},
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MultiSignature, StateVersion,
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};
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use crate as pezpallet_bridge_teyrchains;
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pub type AccountId = u64;
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pub type RelayBlockHeader =
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pezsp_runtime::generic::Header<crate::RelayBlockNumber, crate::RelayBlockHasher>;
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type Block = pezframe_system::mocking::MockBlock<TestRuntime>;
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pub const PARAS_PALLET_NAME: &str = "Paras";
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pub const UNTRACKED_TEYRCHAIN_ID: u32 = 10;
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// use exact expected encoded size: `vec_len_size + header_number_size + state_root_hash_size`
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pub const MAXIMAL_TEYRCHAIN_HEAD_DATA_SIZE: u32 = 1 + 8 + 32;
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// total teyrchains that we use in tests
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pub const TOTAL_TEYRCHAINS: u32 = 4;
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pub type RegularTeyrchainHeader = pezsp_runtime::testing::Header;
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pub type RegularTeyrchainHasher = BlakeTwo256;
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pub type BigTeyrchainHeader = pezsp_runtime::generic::Header<u128, BlakeTwo256>;
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pub struct Teyrchain1;
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impl Chain for Teyrchain1 {
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const ID: ChainId = *b"pch1";
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type BlockNumber = u64;
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type Hash = H256;
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type Hasher = RegularTeyrchainHasher;
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type Header = RegularTeyrchainHeader;
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type AccountId = u64;
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type Balance = u64;
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type Nonce = u64;
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type Signature = MultiSignature;
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const STATE_VERSION: StateVersion = StateVersion::V1;
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fn max_extrinsic_size() -> u32 {
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0
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}
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fn max_extrinsic_weight() -> Weight {
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Weight::zero()
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}
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}
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impl Teyrchain for Teyrchain1 {
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const TEYRCHAIN_ID: u32 = 1;
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const MAX_HEADER_SIZE: u32 = 1_024;
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}
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pub struct Teyrchain2;
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impl Chain for Teyrchain2 {
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const ID: ChainId = *b"pch2";
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type BlockNumber = u64;
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type Hash = H256;
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type Hasher = RegularTeyrchainHasher;
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type Header = RegularTeyrchainHeader;
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type AccountId = u64;
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type Balance = u64;
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type Nonce = u64;
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type Signature = MultiSignature;
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const STATE_VERSION: StateVersion = StateVersion::V1;
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fn max_extrinsic_size() -> u32 {
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0
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}
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fn max_extrinsic_weight() -> Weight {
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Weight::zero()
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}
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}
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impl Teyrchain for Teyrchain2 {
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const TEYRCHAIN_ID: u32 = 2;
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const MAX_HEADER_SIZE: u32 = 1_024;
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}
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pub struct Teyrchain3;
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impl Chain for Teyrchain3 {
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const ID: ChainId = *b"pch3";
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type BlockNumber = u64;
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type Hash = H256;
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type Hasher = RegularTeyrchainHasher;
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type Header = RegularTeyrchainHeader;
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type AccountId = u64;
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type Balance = u64;
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type Nonce = u64;
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type Signature = MultiSignature;
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const STATE_VERSION: StateVersion = StateVersion::V1;
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fn max_extrinsic_size() -> u32 {
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0
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}
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fn max_extrinsic_weight() -> Weight {
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Weight::zero()
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}
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}
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impl Teyrchain for Teyrchain3 {
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const TEYRCHAIN_ID: u32 = 3;
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const MAX_HEADER_SIZE: u32 = 1_024;
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}
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// this teyrchain is using u128 as block number and stored head data size exceeds limit
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pub struct BigTeyrchain;
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impl Chain for BigTeyrchain {
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const ID: ChainId = *b"bpch";
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type BlockNumber = u128;
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type Hash = H256;
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type Hasher = RegularTeyrchainHasher;
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type Header = BigTeyrchainHeader;
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type AccountId = u64;
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type Balance = u64;
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type Nonce = u64;
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type Signature = MultiSignature;
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const STATE_VERSION: StateVersion = StateVersion::V1;
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fn max_extrinsic_size() -> u32 {
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0
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}
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fn max_extrinsic_weight() -> Weight {
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Weight::zero()
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}
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}
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impl Teyrchain for BigTeyrchain {
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const TEYRCHAIN_ID: u32 = 4;
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const MAX_HEADER_SIZE: u32 = 2_048;
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}
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construct_runtime! {
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pub enum TestRuntime
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{
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System: pezframe_system::{Pallet, Call, Config<T>, Storage, Event<T>},
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Grandpa1: pezpallet_bridge_grandpa::<Instance1>::{Pallet, Event<T>},
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Grandpa2: pezpallet_bridge_grandpa::<Instance2>::{Pallet, Event<T>},
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Teyrchains: pezpallet_bridge_teyrchains::{Call, Pallet, Event<T>},
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}
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}
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#[derive_impl(pezframe_system::config_preludes::TestDefaultConfig)]
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impl pezframe_system::Config for TestRuntime {
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type Block = Block;
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}
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parameter_types! {
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pub const HeadersToKeep: u32 = 5;
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pub const FreeHeadersInterval: u32 = 15;
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}
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impl pezpallet_bridge_grandpa::Config<pezpallet_bridge_grandpa::Instance1> for TestRuntime {
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type RuntimeEvent = RuntimeEvent;
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type BridgedChain = TestBridgedChain;
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type MaxFreeHeadersPerBlock = ConstU32<2>;
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type FreeHeadersInterval = FreeHeadersInterval;
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type HeadersToKeep = HeadersToKeep;
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type WeightInfo = ();
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}
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impl pezpallet_bridge_grandpa::Config<pezpallet_bridge_grandpa::Instance2> for TestRuntime {
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type RuntimeEvent = RuntimeEvent;
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type BridgedChain = TestBridgedChain;
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type MaxFreeHeadersPerBlock = ConstU32<2>;
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type FreeHeadersInterval = FreeHeadersInterval;
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type HeadersToKeep = HeadersToKeep;
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type WeightInfo = ();
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}
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parameter_types! {
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pub const HeadsToKeep: u32 = 4;
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pub const ParasPalletName: &'static str = PARAS_PALLET_NAME;
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pub GetTenFirstTeyrchains: Vec<ParaId> = (0..10).map(ParaId).collect();
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}
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impl pezpallet_bridge_teyrchains::Config for TestRuntime {
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type RuntimeEvent = RuntimeEvent;
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type WeightInfo = ();
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type BridgesGrandpaPalletInstance = pezpallet_bridge_grandpa::Instance1;
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type ParasPalletName = ParasPalletName;
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type ParaStoredHeaderDataBuilder = (Teyrchain1, Teyrchain2, Teyrchain3, BigTeyrchain);
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type HeadsToKeep = HeadsToKeep;
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type MaxParaHeadDataSize = ConstU32<MAXIMAL_TEYRCHAIN_HEAD_DATA_SIZE>;
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type OnNewHead = ();
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}
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#[cfg(feature = "runtime-benchmarks")]
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impl pezpallet_bridge_teyrchains::benchmarking::Config<()> for TestRuntime {
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fn teyrchains() -> Vec<ParaId> {
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vec![
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ParaId(Teyrchain1::TEYRCHAIN_ID),
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ParaId(Teyrchain2::TEYRCHAIN_ID),
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ParaId(Teyrchain3::TEYRCHAIN_ID),
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]
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}
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fn prepare_teyrchain_heads_proof(
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teyrchains: &[ParaId],
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_teyrchain_head_size: u32,
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_proof_params: pezbp_runtime::UnverifiedStorageProofParams,
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) -> (
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crate::RelayBlockNumber,
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crate::RelayBlockHash,
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bp_pezkuwi_core::teyrchains::ParaHeadsProof,
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Vec<(ParaId, bp_pezkuwi_core::teyrchains::ParaHash)>,
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) {
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// in mock run we only care about benchmarks correctness, not the benchmark results
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// => ignore size related arguments
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let (state_root, proof, teyrchains) =
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bp_test_utils::prepare_teyrchain_heads_proof::<RegularTeyrchainHeader>(
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teyrchains.iter().map(|p| (p.0, crate::tests::head_data(p.0, 1))).collect(),
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);
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let relay_genesis_hash = crate::tests::initialize(state_root);
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(0, relay_genesis_hash, proof, teyrchains)
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}
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}
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#[derive(Debug)]
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pub struct TestBridgedChain;
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impl Chain for TestBridgedChain {
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const ID: ChainId = *b"tbch";
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type BlockNumber = crate::RelayBlockNumber;
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type Hash = crate::RelayBlockHash;
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type Hasher = crate::RelayBlockHasher;
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type Header = RelayBlockHeader;
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type AccountId = AccountId;
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type Balance = u32;
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type Nonce = u32;
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type Signature = pezsp_runtime::testing::TestSignature;
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const STATE_VERSION: StateVersion = StateVersion::V1;
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fn max_extrinsic_size() -> u32 {
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unreachable!()
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}
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fn max_extrinsic_weight() -> Weight {
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unreachable!()
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}
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}
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impl ChainWithGrandpa for TestBridgedChain {
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const WITH_CHAIN_GRANDPA_PALLET_NAME: &'static str = "";
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const MAX_AUTHORITIES_COUNT: u32 = 16;
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const REASONABLE_HEADERS_IN_JUSTIFICATION_ANCESTRY: u32 = 8;
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const MAX_MANDATORY_HEADER_SIZE: u32 = 256;
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const AVERAGE_HEADER_SIZE: u32 = 64;
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}
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/// Return test externalities to use in tests.
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pub fn new_test_ext() -> pezsp_io::TestExternalities {
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pezsp_io::TestExternalities::new(Default::default())
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}
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/// Run pallet test.
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pub fn run_test<T>(test: impl FnOnce() -> T) -> T {
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new_test_ext().execute_with(|| {
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System::set_block_number(1);
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System::reset_events();
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test()
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})
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}
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/// Return test relay chain header with given number.
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pub fn test_relay_header(
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num: crate::RelayBlockNumber,
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state_root: crate::RelayBlockHash,
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) -> RelayBlockHeader {
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RelayBlockHeader::new(
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num,
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Default::default(),
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state_root,
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Default::default(),
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Default::default(),
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)
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}
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