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// Copyright 2019-2022 PureStake Inc.
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// This file is part of Moonbeam.
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// Moonbeam 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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// Moonbeam 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 Moonbeam.  If not, see <http://www.gnu.org/licenses/>.
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//! The Moonriver Runtime.
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//!
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//! Primary features of this runtime include:
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//! * Ethereum compatibility
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//! * Moonriver tokenomics
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#![cfg_attr(not(feature = "std"), no_std)]
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// `construct_runtime!` does a lot of recursion and requires us to increase the limit to 512.
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#![recursion_limit = "512"]
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// Make the WASM binary available.
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#[cfg(feature = "std")]
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include!(concat!(env!("OUT_DIR"), "/wasm_binary.rs"));
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use account::AccountId20;
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use cumulus_pallet_parachain_system::{
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	RelayChainStateProof, RelayStateProof, RelaychainDataProvider, ValidationData,
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};
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use fp_rpc::TransactionStatus;
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// Re-export required by get! macro.
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use cumulus_primitives_core::{relay_chain, AggregateMessageOrigin};
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#[cfg(feature = "std")]
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pub use fp_evm::GenesisAccount;
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pub use frame_support::traits::Get;
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use frame_support::{
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	construct_runtime,
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	dispatch::{DispatchClass, GetDispatchInfo, PostDispatchInfo},
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	ensure,
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	pallet_prelude::DispatchResult,
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	parameter_types,
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	traits::{
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		fungible::{Balanced, Credit, HoldConsideration, Inspect},
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		tokens::imbalance::ResolveTo,
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		tokens::{PayFromAccount, UnityAssetBalanceConversion},
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		ConstBool, ConstU128, ConstU16, ConstU32, ConstU64, ConstU8, Contains, EitherOfDiverse,
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		EqualPrivilegeOnly, Imbalance, InstanceFilter, LinearStoragePrice, OnFinalize,
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		OnUnbalanced,
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	},
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	weights::{
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		constants::WEIGHT_REF_TIME_PER_SECOND, ConstantMultiplier, Weight, WeightToFeeCoefficient,
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		WeightToFeeCoefficients, WeightToFeePolynomial,
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	},
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	PalletId,
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};
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use frame_system::{EnsureRoot, EnsureSigned};
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pub use moonbeam_core_primitives::{
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	AccountId, AccountIndex, Address, AssetId, Balance, BlockNumber, DigestItem, Hash, Header,
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	Index, Signature,
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};
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use moonbeam_rpc_primitives_txpool::TxPoolResponse;
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use moonbeam_runtime_common::timestamp::{ConsensusHookWrapperForRelayTimestamp, RelayTimestamp};
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pub use pallet_author_slot_filter::EligibilityValue;
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use pallet_ethereum::Call::transact;
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use pallet_ethereum::{PostLogContent, Transaction as EthereumTransaction};
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use pallet_evm::{
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	Account as EVMAccount, EVMFungibleAdapter, EnsureAddressNever, EnsureAddressRoot,
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	FeeCalculator, GasWeightMapping, IdentityAddressMapping,
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	OnChargeEVMTransaction as OnChargeEVMTransactionT, Runner,
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};
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pub use pallet_parachain_staking::{weights::WeightInfo, InflationInfo, Range};
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use pallet_transaction_payment::{FungibleAdapter, Multiplier, TargetedFeeAdjustment};
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use pallet_treasury::TreasuryAccountId;
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use parity_scale_codec::{Decode, Encode, MaxEncodedLen};
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use scale_info::TypeInfo;
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use sp_api::impl_runtime_apis;
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use sp_consensus_slots::Slot;
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use sp_core::{OpaqueMetadata, H160, H256, U256};
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use sp_runtime::{
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	create_runtime_str, generic, impl_opaque_keys,
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	serde::{Deserialize, Serialize},
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	traits::{
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		BlakeTwo256, Block as BlockT, DispatchInfoOf, Dispatchable, IdentityLookup,
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		PostDispatchInfoOf, UniqueSaturatedInto, Zero,
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	},
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	transaction_validity::{
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		InvalidTransaction, TransactionSource, TransactionValidity, TransactionValidityError,
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	},
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	ApplyExtrinsicResult, DispatchErrorWithPostInfo, FixedPointNumber, Perbill, Permill,
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	Perquintill, SaturatedConversion,
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};
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use sp_std::{convert::TryFrom, prelude::*};
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use xcm::{VersionedAssetId, VersionedAssets, VersionedLocation, VersionedXcm};
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use xcm_runtime_apis::{
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	dry_run::{CallDryRunEffects, Error as XcmDryRunApiError, XcmDryRunEffects},
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	fees::Error as XcmPaymentApiError,
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};
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use runtime_params::*;
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use smallvec::smallvec;
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#[cfg(feature = "std")]
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use sp_version::NativeVersion;
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use sp_version::RuntimeVersion;
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use nimbus_primitives::CanAuthor;
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pub use precompiles::{
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	MoonriverPrecompiles, PrecompileName, FOREIGN_ASSET_PRECOMPILE_ADDRESS_PREFIX,
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};
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#[cfg(any(feature = "std", test))]
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pub use sp_runtime::BuildStorage;
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pub type Precompiles = MoonriverPrecompiles<Runtime>;
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pub mod asset_config;
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pub mod governance;
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pub mod runtime_params;
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pub mod xcm_config;
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mod migrations;
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mod precompiles;
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mod weights;
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pub(crate) use weights as moonriver_weights;
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pub use governance::councils::*;
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/// MOVR, the native token, uses 18 decimals of precision.
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pub mod currency {
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	use super::Balance;
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	// Provide a common factor between runtimes based on a supply of 10_000_000 tokens.
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	pub const SUPPLY_FACTOR: Balance = 1;
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	pub const WEI: Balance = 1;
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	pub const KILOWEI: Balance = 1_000;
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	pub const MEGAWEI: Balance = 1_000_000;
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	pub const GIGAWEI: Balance = 1_000_000_000;
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	pub const MICROMOVR: Balance = 1_000_000_000_000;
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	pub const MILLIMOVR: Balance = 1_000_000_000_000_000;
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	pub const MOVR: Balance = 1_000_000_000_000_000_000;
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	pub const KILOMOVR: Balance = 1_000_000_000_000_000_000_000;
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	pub const TRANSACTION_BYTE_FEE: Balance = 1 * GIGAWEI * SUPPLY_FACTOR;
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	pub const STORAGE_BYTE_FEE: Balance = 100 * MICROMOVR * SUPPLY_FACTOR;
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	pub const WEIGHT_FEE: Balance = 50 * KILOWEI * SUPPLY_FACTOR / 4;
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	pub const fn deposit(items: u32, bytes: u32) -> Balance {
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		items as Balance * 1 * MOVR * SUPPLY_FACTOR + (bytes as Balance) * STORAGE_BYTE_FEE
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	}
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}
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/// Maximum weight per block
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pub const MAXIMUM_BLOCK_WEIGHT: Weight = Weight::from_parts(WEIGHT_REF_TIME_PER_SECOND, u64::MAX)
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	.saturating_mul(2)
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	.set_proof_size(relay_chain::MAX_POV_SIZE as u64);
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pub const MILLISECS_PER_BLOCK: u64 = 6_000;
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pub const MINUTES: BlockNumber = 60_000 / (MILLISECS_PER_BLOCK as BlockNumber);
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pub const HOURS: BlockNumber = MINUTES * 60;
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pub const DAYS: BlockNumber = HOURS * 24;
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pub const WEEKS: BlockNumber = DAYS * 7;
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/// Opaque types. These are used by the CLI to instantiate machinery that don't need to know
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/// the specifics of the runtime. They can then be made to be agnostic over specific formats
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/// of data like extrinsics, allowing for them to continue syncing the network through upgrades
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/// to even the core datastructures.
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pub mod opaque {
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	use super::*;
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	pub use sp_runtime::OpaqueExtrinsic as UncheckedExtrinsic;
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	pub type Block = generic::Block<Header, UncheckedExtrinsic>;
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	impl_opaque_keys! {
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		pub struct SessionKeys {
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			pub nimbus: AuthorInherent,
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			pub vrf: session_keys_primitives::VrfSessionKey,
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		}
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	}
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}
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/// This runtime version.
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/// The spec_version is composed of 2x2 digits. The first 2 digits represent major changes
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/// that can't be skipped, such as data migration upgrades. The last 2 digits represent minor
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/// changes which can be skipped.
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#[cfg(feature = "runtime-benchmarks")]
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#[sp_version::runtime_version]
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pub const VERSION: RuntimeVersion = RuntimeVersion {
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	spec_name: create_runtime_str!("moonriver"),
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	impl_name: create_runtime_str!("moonriver"),
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	authoring_version: 3,
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	spec_version: 3400,
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	impl_version: 0,
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	apis: RUNTIME_API_VERSIONS,
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	transaction_version: 3,
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	state_version: 0,
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};
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/// We need to duplicate this because the `runtime_version` macro is conflicting with the
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/// conditional compilation at the state_version field.
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#[cfg(not(feature = "runtime-benchmarks"))]
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#[sp_version::runtime_version]
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pub const VERSION: RuntimeVersion = RuntimeVersion {
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	spec_name: create_runtime_str!("moonriver"),
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	impl_name: create_runtime_str!("moonriver"),
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	authoring_version: 3,
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	spec_version: 3400,
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	impl_version: 0,
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	apis: RUNTIME_API_VERSIONS,
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	transaction_version: 3,
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	state_version: 1,
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};
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/// The version information used to identify this runtime when compiled natively.
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#[cfg(feature = "std")]
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pub fn native_version() -> NativeVersion {
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	NativeVersion {
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		runtime_version: VERSION,
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		can_author_with: Default::default(),
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	}
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}
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const NORMAL_DISPATCH_RATIO: Perbill = Perbill::from_percent(75);
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pub const NORMAL_WEIGHT: Weight = MAXIMUM_BLOCK_WEIGHT.saturating_mul(3).saturating_div(4);
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// Here we assume Ethereum's base fee of 21000 gas and convert to weight, but we
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// subtract roughly the cost of a balance transfer from it (about 1/3 the cost)
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// and some cost to account for per-byte-fee.
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// TODO: we should use benchmarking's overhead feature to measure this
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pub const EXTRINSIC_BASE_WEIGHT: Weight = Weight::from_parts(10000 * WEIGHT_PER_GAS, 0);
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pub struct RuntimeBlockWeights;
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impl Get<frame_system::limits::BlockWeights> for RuntimeBlockWeights {
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	fn get() -> frame_system::limits::BlockWeights {
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		frame_system::limits::BlockWeights::builder()
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			.for_class(DispatchClass::Normal, |weights| {
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				weights.base_extrinsic = EXTRINSIC_BASE_WEIGHT;
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				weights.max_total = NORMAL_WEIGHT.into();
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			})
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			.for_class(DispatchClass::Operational, |weights| {
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				weights.max_total = MAXIMUM_BLOCK_WEIGHT.into();
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				weights.reserved = (MAXIMUM_BLOCK_WEIGHT - NORMAL_WEIGHT).into();
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			})
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			.avg_block_initialization(Perbill::from_percent(10))
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			.build()
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			.expect("Provided BlockWeight definitions are valid, qed")
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	}
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}
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parameter_types! {
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	pub const Version: RuntimeVersion = VERSION;
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	/// We allow for 5 MB blocks.
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	pub BlockLength: frame_system::limits::BlockLength = frame_system::limits::BlockLength
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		::max_with_normal_ratio(5 * 1024 * 1024, NORMAL_DISPATCH_RATIO);
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}
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impl frame_system::Config for Runtime {
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	/// The identifier used to distinguish between accounts.
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	type AccountId = AccountId;
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	/// The aggregated dispatch type that is available for extrinsics.
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	type RuntimeCall = RuntimeCall;
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	/// The lookup mechanism to get account ID from whatever is passed in dispatchers.
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	type Lookup = IdentityLookup<AccountId>;
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	/// The index type for storing how many extrinsics an account has signed.
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	type Nonce = Index;
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	/// The index type for blocks.
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	type Block = Block;
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	/// The hashing algorithm used.
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	type Hashing = BlakeTwo256;
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	/// The output of the `Hashing` function.
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	type Hash = H256;
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	/// The ubiquitous event type.
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	type RuntimeEvent = RuntimeEvent;
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	/// The ubiquitous origin type.
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	type RuntimeOrigin = RuntimeOrigin;
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	/// The aggregated RuntimeTask type.
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	type RuntimeTask = RuntimeTask;
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	/// Maximum number of block number to block hash mappings to keep (oldest pruned first).
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	type BlockHashCount = ConstU32<256>;
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	/// Maximum weight of each block. With a default weight system of 1byte == 1weight, 4mb is ok.
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	type BlockWeights = RuntimeBlockWeights;
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	/// Maximum size of all encoded transactions (in bytes) that are allowed in one block.
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	type BlockLength = BlockLength;
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	/// Runtime version.
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	type Version = Version;
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	type PalletInfo = PalletInfo;
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	type AccountData = pallet_balances::AccountData<Balance>;
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	type OnNewAccount = ();
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	type OnKilledAccount = ();
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	type DbWeight = moonriver_weights::db::rocksdb::constants::RocksDbWeight;
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	type BaseCallFilter = MaintenanceMode;
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	type SystemWeightInfo = ();
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	/// This is used as an identifier of the chain. 42 is the generic substrate prefix.
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	type SS58Prefix = ConstU16<1285>;
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	type OnSetCode = cumulus_pallet_parachain_system::ParachainSetCode<Self>;
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	type MaxConsumers = frame_support::traits::ConstU32<16>;
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	type SingleBlockMigrations = ();
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	type MultiBlockMigrator = ();
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	type PreInherents = ();
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	type PostInherents = ();
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	type PostTransactions = ();
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}
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impl pallet_utility::Config for Runtime {
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	type RuntimeEvent = RuntimeEvent;
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	type RuntimeCall = RuntimeCall;
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	type PalletsOrigin = OriginCaller;
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	type WeightInfo = moonriver_weights::pallet_utility::WeightInfo<Runtime>;
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}
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impl pallet_timestamp::Config for Runtime {
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	/// A timestamp: milliseconds since the unix epoch.
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	type Moment = u64;
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	type OnTimestampSet = ();
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	type MinimumPeriod = ConstU64<3000>;
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	type WeightInfo = moonriver_weights::pallet_timestamp::WeightInfo<Runtime>;
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}
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#[cfg(not(feature = "runtime-benchmarks"))]
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parameter_types! {
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	pub const ExistentialDeposit: Balance = 0;
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}
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#[cfg(feature = "runtime-benchmarks")]
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parameter_types! {
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	pub const ExistentialDeposit: Balance = 1;
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}
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impl pallet_balances::Config for Runtime {
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	type MaxReserves = ConstU32<50>;
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	type ReserveIdentifier = [u8; 4];
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	type MaxLocks = ConstU32<50>;
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	/// The type for recording an account's balance.
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	type Balance = Balance;
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	/// The ubiquitous event type.
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	type RuntimeEvent = RuntimeEvent;
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	type DustRemoval = ();
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	type ExistentialDeposit = ExistentialDeposit;
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	type AccountStore = System;
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	type FreezeIdentifier = ();
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	type MaxFreezes = ConstU32<0>;
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	type RuntimeHoldReason = RuntimeHoldReason;
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	type RuntimeFreezeReason = RuntimeFreezeReason;
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	type WeightInfo = moonriver_weights::pallet_balances::WeightInfo<Runtime>;
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}
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pub struct DealWithFees<R>(sp_std::marker::PhantomData<R>);
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impl<R> OnUnbalanced<Credit<R::AccountId, pallet_balances::Pallet<R>>> for DealWithFees<R>
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where
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	R: pallet_balances::Config + pallet_treasury::Config,
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{
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	// this seems to be called for substrate-based transactions
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	fn on_unbalanceds<B>(
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		mut fees_then_tips: impl Iterator<Item = Credit<R::AccountId, pallet_balances::Pallet<R>>>,
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	) {
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		if let Some(fees) = fees_then_tips.next() {
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			let treasury_proportion =
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				runtime_params::dynamic_params::runtime_config::FeesTreasuryProportion::get();
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			let treasury_part = treasury_proportion.deconstruct();
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			let burn_part = Perbill::one().deconstruct() - treasury_part;
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			let (_, to_treasury) = fees.ration(burn_part, treasury_part);
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			// Balances pallet automatically burns dropped Credits by decreasing
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			// total_supply accordingly
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			ResolveTo::<TreasuryAccountId<R>, pallet_balances::Pallet<R>>::on_unbalanced(
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				to_treasury,
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1
			);
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			// handle tip if there is one
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			if let Some(tip) = fees_then_tips.next() {
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				// for now we use the same burn/treasury strategy used for regular fees
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				let (_, to_treasury) = tip.ration(burn_part, treasury_part);
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				ResolveTo::<TreasuryAccountId<R>, pallet_balances::Pallet<R>>::on_unbalanced(
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					to_treasury,
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				);
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			}
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		}
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	}
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	// this is called from pallet_evm for Ethereum-based transactions
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	// (technically, it calls on_unbalanced, which calls this when non-zero)
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	fn on_nonzero_unbalanced(amount: Credit<R::AccountId, pallet_balances::Pallet<R>>) {
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		// Balances pallet automatically burns dropped Credits by decreasing
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		// total_supply accordingly
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		let treasury_proportion =
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			runtime_params::dynamic_params::runtime_config::FeesTreasuryProportion::get();
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		let treasury_part = treasury_proportion.deconstruct();
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		let burn_part = Perbill::one().deconstruct() - treasury_part;
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		let (_, to_treasury) = amount.ration(burn_part, treasury_part);
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		ResolveTo::<TreasuryAccountId<R>, pallet_balances::Pallet<R>>::on_unbalanced(to_treasury);
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	}
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}
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pub struct LengthToFee;
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impl WeightToFeePolynomial for LengthToFee {
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	type Balance = Balance;
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	fn polynomial() -> WeightToFeeCoefficients<Self::Balance> {
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		smallvec![
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			WeightToFeeCoefficient {
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				degree: 1,
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				coeff_frac: Perbill::zero(),
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				coeff_integer: currency::TRANSACTION_BYTE_FEE,
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				negative: false,
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			},
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			WeightToFeeCoefficient {
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				degree: 3,
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				coeff_frac: Perbill::zero(),
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				coeff_integer: 1 * currency::SUPPLY_FACTOR,
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				negative: false,
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			},
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		]
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	}
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}
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impl pallet_transaction_payment::Config for Runtime {
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	type RuntimeEvent = RuntimeEvent;
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	type OnChargeTransaction = FungibleAdapter<Balances, DealWithFees<Runtime>>;
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	type OperationalFeeMultiplier = ConstU8<5>;
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	type WeightToFee = ConstantMultiplier<Balance, ConstU128<{ currency::WEIGHT_FEE }>>;
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	type LengthToFee = LengthToFee;
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	type FeeMultiplierUpdate = SlowAdjustingFeeUpdate<Runtime>;
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}
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impl pallet_evm_chain_id::Config for Runtime {}
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/// Current approximation of the gas/s consumption considering
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/// EVM execution over compiled WASM (on 4.4Ghz CPU).
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/// Given the 2000ms Weight, from which 75% only are used for transactions,
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/// the total EVM execution gas limit is: GAS_PER_SECOND * 2 * 0.75 ~= 60_000_000.
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pub const GAS_PER_SECOND: u64 = 40_000_000;
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/// Approximate ratio of the amount of Weight per Gas.
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/// u64 works for approximations because Weight is a very small unit compared to gas.
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pub const WEIGHT_PER_GAS: u64 = WEIGHT_REF_TIME_PER_SECOND / GAS_PER_SECOND;
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parameter_types! {
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	pub BlockGasLimit: U256
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		= U256::from(NORMAL_DISPATCH_RATIO * MAXIMUM_BLOCK_WEIGHT.ref_time() / WEIGHT_PER_GAS);
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	/// The portion of the `NORMAL_DISPATCH_RATIO` that we adjust the fees with. Blocks filled less
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	/// than this will decrease the weight and more will increase.
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	pub const TargetBlockFullness: Perquintill = Perquintill::from_percent(35);
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	/// The adjustment variable of the runtime. Higher values will cause `TargetBlockFullness` to
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	/// change the fees more rapidly. This low value causes changes to occur slowly over time.
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	pub AdjustmentVariable: Multiplier = Multiplier::saturating_from_rational(4, 1_000);
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	/// Minimum amount of the multiplier. This value cannot be too low. A test case should ensure
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	/// that combined with `AdjustmentVariable`, we can recover from the minimum.
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	/// See `multiplier_can_grow_from_zero` in integration_tests.rs.
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	/// This value is currently only used by pallet-transaction-payment as an assertion that the
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	/// next multiplier is always > min value.
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	pub MinimumMultiplier: Multiplier = Multiplier::from(1u128);
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	/// Maximum multiplier. We pick a value that is expensive but not impossibly so; it should act
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	/// as a safety net.
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	pub MaximumMultiplier: Multiplier = Multiplier::from(100_000u128);
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	pub PrecompilesValue: MoonriverPrecompiles<Runtime> = MoonriverPrecompiles::<_>::new();
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	pub WeightPerGas: Weight = Weight::from_parts(WEIGHT_PER_GAS, 0);
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	/// The amount of gas per pov. A ratio of 16 if we convert ref_time to gas and we compare
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	/// it with the pov_size for a block. E.g.
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	/// ceil(
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	///     (max_extrinsic.ref_time() / max_extrinsic.proof_size()) / WEIGHT_PER_GAS
466
	/// )
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	/// We should re-check `xcm_config::Erc20XcmBridgeTransferGasLimit` when changing this value
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	pub const GasLimitPovSizeRatio: u64 = 16;
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	/// The amount of gas per storage (in bytes): BLOCK_GAS_LIMIT / BLOCK_STORAGE_LIMIT
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	/// The current definition of BLOCK_STORAGE_LIMIT is 160 KB, resulting in a value of 366.
471
	pub GasLimitStorageGrowthRatio: u64 = 366;
472
}
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474
pub struct TransactionPaymentAsGasPrice;
475
impl FeeCalculator for TransactionPaymentAsGasPrice {
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416
	fn min_gas_price() -> (U256, Weight) {
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416
		// note: transaction-payment differs from EIP-1559 in that its tip and length fees are not
478
416
		//       scaled by the multiplier, which means its multiplier will be overstated when
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416
		//       applied to an ethereum transaction
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		// note: transaction-payment uses both a congestion modifier (next_fee_multiplier, which is
481
416
		//       updated once per block in on_finalize) and a 'WeightToFee' implementation. Our
482
416
		//       runtime implements this as a 'ConstantModifier', so we can get away with a simple
483
416
		//       multiplication here.
484
416
		// It is imperative that `saturating_mul_int` be performed as late as possible in the
485
416
		// expression since it involves fixed point multiplication with a division by a fixed
486
416
		// divisor. This leads to truncation and subsequent precision loss if performed too early.
487
416
		// This can lead to min_gas_price being same across blocks even if the multiplier changes.
488
416
		// There's still some precision loss when the final `gas_price` (used_gas * min_gas_price)
489
416
		// is computed in frontier, but that's currently unavoidable.
490
416
		let min_gas_price = TransactionPayment::next_fee_multiplier()
491
416
			.saturating_mul_int((currency::WEIGHT_FEE * 4).saturating_mul(WEIGHT_PER_GAS as u128));
492
416
		(
493
416
			min_gas_price.into(),
494
416
			<Runtime as frame_system::Config>::DbWeight::get().reads(1),
495
416
		)
496
416
	}
497
}
498

            
499
/// Parameterized slow adjusting fee updated based on
500
/// https://w3f-research.readthedocs.io/en/latest/polkadot/overview/2-token-economics.html#-2.-slow-adjusting-mechanism // editorconfig-checker-disable-line
501
///
502
/// The adjustment algorithm boils down to:
503
///
504
/// diff = (previous_block_weight - target) / maximum_block_weight
505
/// next_multiplier = prev_multiplier * (1 + (v * diff) + ((v * diff)^2 / 2))
506
/// assert(next_multiplier > min)
507
///     where: v is AdjustmentVariable
508
///            target is TargetBlockFullness
509
///            min is MinimumMultiplier
510
pub type SlowAdjustingFeeUpdate<R> = TargetedFeeAdjustment<
511
	R,
512
	TargetBlockFullness,
513
	AdjustmentVariable,
514
	MinimumMultiplier,
515
	MaximumMultiplier,
516
>;
517

            
518
use frame_support::traits::FindAuthor;
519
//TODO It feels like this shold be able to work for any T: H160, but I tried for
520
// embarassingly long and couldn't figure that out.
521

            
522
/// The author inherent provides a AccountId20, but pallet evm needs an H160.
523
/// This simple adapter makes the conversion.
524
pub struct FindAuthorAdapter<Inner>(sp_std::marker::PhantomData<Inner>);
525

            
526
impl<Inner> FindAuthor<H160> for FindAuthorAdapter<Inner>
527
where
528
	Inner: FindAuthor<AccountId20>,
529
{
530
6785
	fn find_author<'a, I>(digests: I) -> Option<H160>
531
6785
	where
532
6785
		I: 'a + IntoIterator<Item = (sp_runtime::ConsensusEngineId, &'a [u8])>,
533
6785
	{
534
6785
		Inner::find_author(digests).map(Into::into)
535
6785
	}
536
}
537

            
538
moonbeam_runtime_common::impl_on_charge_evm_transaction!();
539

            
540
impl pallet_evm::Config for Runtime {
541
	type FeeCalculator = TransactionPaymentAsGasPrice;
542
	type GasWeightMapping = pallet_evm::FixedGasWeightMapping<Self>;
543
	type WeightPerGas = WeightPerGas;
544
	type BlockHashMapping = pallet_ethereum::EthereumBlockHashMapping<Self>;
545
	type CallOrigin = EnsureAddressRoot<AccountId>;
546
	type WithdrawOrigin = EnsureAddressNever<AccountId>;
547
	type AddressMapping = IdentityAddressMapping;
548
	type Currency = Balances;
549
	type RuntimeEvent = RuntimeEvent;
550
	type Runner = pallet_evm::runner::stack::Runner<Self>;
551
	type PrecompilesType = MoonriverPrecompiles<Self>;
552
	type PrecompilesValue = PrecompilesValue;
553
	type ChainId = EthereumChainId;
554
	type OnChargeTransaction = OnChargeEVMTransaction<DealWithFees<Runtime>>;
555
	type BlockGasLimit = BlockGasLimit;
556
	type FindAuthor = FindAuthorAdapter<AuthorInherent>;
557
	type OnCreate = ();
558
	type GasLimitPovSizeRatio = GasLimitPovSizeRatio;
559
	type SuicideQuickClearLimit = ConstU32<0>;
560
	type GasLimitStorageGrowthRatio = GasLimitStorageGrowthRatio;
561
	type Timestamp = RelayTimestamp;
562
	type WeightInfo = moonriver_weights::pallet_evm::WeightInfo<Runtime>;
563
}
564

            
565
parameter_types! {
566
	pub MaximumSchedulerWeight: Weight = NORMAL_DISPATCH_RATIO * RuntimeBlockWeights::get().max_block;
567
}
568

            
569
impl pallet_scheduler::Config for Runtime {
570
	type RuntimeEvent = RuntimeEvent;
571
	type RuntimeOrigin = RuntimeOrigin;
572
	type PalletsOrigin = OriginCaller;
573
	type RuntimeCall = RuntimeCall;
574
	type MaximumWeight = MaximumSchedulerWeight;
575
	type ScheduleOrigin = EnsureRoot<AccountId>;
576
	type MaxScheduledPerBlock = ConstU32<50>;
577
	type WeightInfo = moonriver_weights::pallet_scheduler::WeightInfo<Runtime>;
578
	type OriginPrivilegeCmp = EqualPrivilegeOnly;
579
	type Preimages = Preimage;
580
}
581

            
582
parameter_types! {
583
	pub const PreimageBaseDeposit: Balance = 5 * currency::MOVR * currency::SUPPLY_FACTOR ;
584
	pub const PreimageByteDeposit: Balance = currency::STORAGE_BYTE_FEE;
585
	pub const PreimageHoldReason: RuntimeHoldReason =
586
		RuntimeHoldReason::Preimage(pallet_preimage::HoldReason::Preimage);
587
}
588

            
589
impl pallet_preimage::Config for Runtime {
590
	type WeightInfo = moonriver_weights::pallet_preimage::WeightInfo<Runtime>;
591
	type RuntimeEvent = RuntimeEvent;
592
	type Currency = Balances;
593
	type ManagerOrigin = EnsureRoot<AccountId>;
594
	type Consideration = HoldConsideration<
595
		AccountId,
596
		Balances,
597
		PreimageHoldReason,
598
		LinearStoragePrice<PreimageBaseDeposit, PreimageByteDeposit, Balance>,
599
	>;
600
}
601

            
602
parameter_types! {
603
	pub const ProposalBond: Permill = Permill::from_percent(5);
604
	pub const TreasuryId: PalletId = PalletId(*b"py/trsry");
605
	pub TreasuryAccount: AccountId = Treasury::account_id();
606
}
607

            
608
type TreasuryRejectOrigin = EitherOfDiverse<
609
	EnsureRoot<AccountId>,
610
	pallet_collective::EnsureProportionMoreThan<AccountId, TreasuryCouncilInstance, 1, 2>,
611
>;
612

            
613
impl pallet_treasury::Config for Runtime {
614
	type PalletId = TreasuryId;
615
	type Currency = Balances;
616
	// More than half of the council is required (or root) to reject a proposal
617
	type RejectOrigin = TreasuryRejectOrigin;
618
	type RuntimeEvent = RuntimeEvent;
619
	type SpendPeriod = ConstU32<{ 6 * DAYS }>;
620
	type Burn = ();
621
	type BurnDestination = ();
622
	type MaxApprovals = ConstU32<100>;
623
	type WeightInfo = moonriver_weights::pallet_treasury::WeightInfo<Runtime>;
624
	type SpendFunds = ();
625
	#[cfg(not(feature = "runtime-benchmarks"))]
626
	type SpendOrigin = frame_support::traits::NeverEnsureOrigin<Balance>; // Disabled, no spending
627
	#[cfg(feature = "runtime-benchmarks")]
628
	type SpendOrigin =
629
		frame_system::EnsureWithSuccess<EnsureRoot<AccountId>, AccountId, benches::MaxBalance>;
630
	type AssetKind = ();
631
	type Beneficiary = AccountId;
632
	type BeneficiaryLookup = IdentityLookup<AccountId>;
633
	type Paymaster = PayFromAccount<Balances, TreasuryAccount>;
634
	type BalanceConverter = UnityAssetBalanceConversion;
635
	type PayoutPeriod = ConstU32<{ 30 * DAYS }>;
636
	#[cfg(feature = "runtime-benchmarks")]
637
	type BenchmarkHelper = BenchmarkHelper;
638
}
639

            
640
parameter_types! {
641
	pub const MaxSubAccounts: u32 = 100;
642
	pub const MaxAdditionalFields: u32 = 100;
643
	pub const MaxRegistrars: u32 = 20;
644
	pub const PendingUsernameExpiration: u32 = 7 * DAYS;
645
	pub const MaxSuffixLength: u32 = 7;
646
	pub const MaxUsernameLength: u32 = 32;
647
}
648

            
649
type IdentityForceOrigin =
650
	EitherOfDiverse<EnsureRoot<AccountId>, governance::custom_origins::GeneralAdmin>;
651
type IdentityRegistrarOrigin =
652
	EitherOfDiverse<EnsureRoot<AccountId>, governance::custom_origins::GeneralAdmin>;
653

            
654
impl pallet_identity::Config for Runtime {
655
	type RuntimeEvent = RuntimeEvent;
656
	type Currency = Balances;
657
	// Add one item in storage and take 258 bytes
658
	type BasicDeposit = ConstU128<{ currency::deposit(1, 258) }>;
659
	// Does not add any item to the storage but takes 1 bytes
660
	type ByteDeposit = ConstU128<{ currency::deposit(0, 1) }>;
661
	// Add one item in storage and take 53 bytes
662
	type SubAccountDeposit = ConstU128<{ currency::deposit(1, 53) }>;
663
	type MaxSubAccounts = MaxSubAccounts;
664
	type IdentityInformation = pallet_identity::legacy::IdentityInfo<MaxAdditionalFields>;
665
	type MaxRegistrars = MaxRegistrars;
666
	type Slashed = Treasury;
667
	type ForceOrigin = IdentityForceOrigin;
668
	type RegistrarOrigin = IdentityRegistrarOrigin;
669
	type OffchainSignature = Signature;
670
	type SigningPublicKey = <Signature as sp_runtime::traits::Verify>::Signer;
671
	type UsernameAuthorityOrigin = EnsureRoot<AccountId>;
672
	type PendingUsernameExpiration = PendingUsernameExpiration;
673
	type MaxSuffixLength = MaxSuffixLength;
674
	type MaxUsernameLength = MaxUsernameLength;
675
	type WeightInfo = moonriver_weights::pallet_identity::WeightInfo<Runtime>;
676
}
677

            
678
pub struct TransactionConverter;
679

            
680
impl fp_rpc::ConvertTransaction<UncheckedExtrinsic> for TransactionConverter {
681
21
	fn convert_transaction(&self, transaction: pallet_ethereum::Transaction) -> UncheckedExtrinsic {
682
21
		UncheckedExtrinsic::new_unsigned(
683
21
			pallet_ethereum::Call::<Runtime>::transact { transaction }.into(),
684
21
		)
685
21
	}
686
}
687

            
688
impl fp_rpc::ConvertTransaction<opaque::UncheckedExtrinsic> for TransactionConverter {
689
	fn convert_transaction(
690
		&self,
691
		transaction: pallet_ethereum::Transaction,
692
	) -> opaque::UncheckedExtrinsic {
693
		let extrinsic = UncheckedExtrinsic::new_unsigned(
694
			pallet_ethereum::Call::<Runtime>::transact { transaction }.into(),
695
		);
696
		let encoded = extrinsic.encode();
697
		opaque::UncheckedExtrinsic::decode(&mut &encoded[..])
698
			.expect("Encoded extrinsic is always valid")
699
	}
700
}
701

            
702
parameter_types! {
703
	pub const PostBlockAndTxnHashes: PostLogContent = PostLogContent::BlockAndTxnHashes;
704
}
705

            
706
impl pallet_ethereum::Config for Runtime {
707
	type RuntimeEvent = RuntimeEvent;
708
	type StateRoot = pallet_ethereum::IntermediateStateRoot<Self>;
709
	type PostLogContent = PostBlockAndTxnHashes;
710
	type ExtraDataLength = ConstU32<30>;
711
}
712

            
713
pub struct EthereumXcmEnsureProxy;
714
impl xcm_primitives::EnsureProxy<AccountId> for EthereumXcmEnsureProxy {
715
	fn ensure_ok(delegator: AccountId, delegatee: AccountId) -> Result<(), &'static str> {
716
		// The EVM implicitely contains an Any proxy, so we only allow for "Any" proxies
717
		let def: pallet_proxy::ProxyDefinition<AccountId, ProxyType, BlockNumber> =
718
			pallet_proxy::Pallet::<Runtime>::find_proxy(
719
				&delegator,
720
				&delegatee,
721
				Some(ProxyType::Any),
722
			)
723
			.map_err(|_| "proxy error: expected `ProxyType::Any`")?;
724
		// We only allow to use it for delay zero proxies, as the call will immediatly be executed
725
		ensure!(def.delay.is_zero(), "proxy delay is Non-zero`");
726
		Ok(())
727
	}
728
}
729

            
730
impl pallet_ethereum_xcm::Config for Runtime {
731
	type RuntimeEvent = RuntimeEvent;
732
	type InvalidEvmTransactionError = pallet_ethereum::InvalidTransactionWrapper;
733
	type ValidatedTransaction = pallet_ethereum::ValidatedTransaction<Self>;
734
	type XcmEthereumOrigin = pallet_ethereum_xcm::EnsureXcmEthereumTransaction;
735
	type ReservedXcmpWeight = ReservedXcmpWeight;
736
	type EnsureProxy = EthereumXcmEnsureProxy;
737
	type ControllerOrigin = EnsureRoot<AccountId>;
738
	type ForceOrigin = EnsureRoot<AccountId>;
739
}
740

            
741
parameter_types! {
742
	pub const ReservedXcmpWeight: Weight = MAXIMUM_BLOCK_WEIGHT.saturating_div(4);
743
	pub const ReservedDmpWeight: Weight = MAXIMUM_BLOCK_WEIGHT.saturating_div(4);
744
	pub const RelayOrigin: AggregateMessageOrigin = AggregateMessageOrigin::Parent;
745
}
746

            
747
/// Maximum number of blocks simultaneously accepted by the Runtime, not yet included
748
/// into the relay chain.
749
const UNINCLUDED_SEGMENT_CAPACITY: u32 = 3;
750
/// How many parachain blocks are processed by the relay chain per parent. Limits the
751
/// number of blocks authored per slot.
752
const BLOCK_PROCESSING_VELOCITY: u32 = 1;
753

            
754
type ConsensusHook = pallet_async_backing::consensus_hook::FixedVelocityConsensusHook<
755
	Runtime,
756
	BLOCK_PROCESSING_VELOCITY,
757
	UNINCLUDED_SEGMENT_CAPACITY,
758
>;
759

            
760
impl cumulus_pallet_parachain_system::Config for Runtime {
761
	type RuntimeEvent = RuntimeEvent;
762
	type OnSystemEvent = ();
763
	type SelfParaId = ParachainInfo;
764
	type ReservedDmpWeight = ReservedDmpWeight;
765
	type OutboundXcmpMessageSource = XcmpQueue;
766
	type XcmpMessageHandler = XcmpQueue;
767
	type ReservedXcmpWeight = ReservedXcmpWeight;
768
	type CheckAssociatedRelayNumber = EmergencyParaXcm;
769
	type ConsensusHook = ConsensusHookWrapperForRelayTimestamp<Runtime, ConsensusHook>;
770
	type DmpQueue = frame_support::traits::EnqueueWithOrigin<MessageQueue, RelayOrigin>;
771
	type WeightInfo = moonriver_weights::cumulus_pallet_parachain_system::WeightInfo<Runtime>;
772
}
773

            
774
impl parachain_info::Config for Runtime {}
775

            
776
pub struct OnNewRound;
777
impl pallet_parachain_staking::OnNewRound for OnNewRound {
778
40
	fn on_new_round(round_index: pallet_parachain_staking::RoundIndex) -> Weight {
779
40
		MoonbeamOrbiters::on_new_round(round_index)
780
40
	}
781
}
782
pub struct PayoutCollatorOrOrbiterReward;
783
impl pallet_parachain_staking::PayoutCollatorReward<Runtime> for PayoutCollatorOrOrbiterReward {
784
16
	fn payout_collator_reward(
785
16
		for_round: pallet_parachain_staking::RoundIndex,
786
16
		collator_id: AccountId,
787
16
		amount: Balance,
788
16
	) -> Weight {
789
16
		let extra_weight =
790
16
			if MoonbeamOrbiters::is_collator_pool_with_active_orbiter(for_round, collator_id) {
791
				MoonbeamOrbiters::distribute_rewards(for_round, collator_id, amount)
792
			} else {
793
16
				ParachainStaking::mint_collator_reward(for_round, collator_id, amount)
794
			};
795

            
796
16
		<Runtime as frame_system::Config>::DbWeight::get()
797
16
			.reads(1)
798
16
			.saturating_add(extra_weight)
799
16
	}
800
}
801

            
802
pub struct OnInactiveCollator;
803
impl pallet_parachain_staking::OnInactiveCollator<Runtime> for OnInactiveCollator {
804
	fn on_inactive_collator(
805
		collator_id: AccountId,
806
		round: pallet_parachain_staking::RoundIndex,
807
	) -> Result<Weight, DispatchErrorWithPostInfo<PostDispatchInfo>> {
808
		let extra_weight = if !MoonbeamOrbiters::is_collator_pool_with_active_orbiter(
809
			round,
810
			collator_id.clone(),
811
		) {
812
			ParachainStaking::go_offline_inner(collator_id)?;
813
			<Runtime as pallet_parachain_staking::Config>::WeightInfo::go_offline(
814
				pallet_parachain_staking::MAX_CANDIDATES,
815
			)
816
		} else {
817
			Weight::zero()
818
		};
819

            
820
		Ok(<Runtime as frame_system::Config>::DbWeight::get()
821
			.reads(1)
822
			.saturating_add(extra_weight))
823
	}
824
}
825

            
826
type MonetaryGovernanceOrigin =
827
	EitherOfDiverse<EnsureRoot<AccountId>, governance::custom_origins::GeneralAdmin>;
828

            
829
pub struct RelayChainSlotProvider;
830
impl Get<Slot> for RelayChainSlotProvider {
831
40
	fn get() -> Slot {
832
40
		let slot_info = pallet_async_backing::pallet::Pallet::<Runtime>::slot_info();
833
40
		slot_info.unwrap_or_default().0
834
40
	}
835
}
836

            
837
impl pallet_parachain_staking::Config for Runtime {
838
	type RuntimeEvent = RuntimeEvent;
839
	type Currency = Balances;
840
	type MonetaryGovernanceOrigin = MonetaryGovernanceOrigin;
841
	/// Minimum round length is 2 minutes (10 * 12 second block times)
842
	type MinBlocksPerRound = ConstU32<10>;
843
	/// If a collator doesn't produce any block on this number of rounds, it is notified as inactive
844
	type MaxOfflineRounds = ConstU32<2>;
845
	/// Rounds before the collator leaving the candidates request can be executed
846
	type LeaveCandidatesDelay = ConstU32<24>;
847
	/// Rounds before the candidate bond increase/decrease can be executed
848
	type CandidateBondLessDelay = ConstU32<24>;
849
	/// Rounds before the delegator exit can be executed
850
	type LeaveDelegatorsDelay = ConstU32<24>;
851
	/// Rounds before the delegator revocation can be executed
852
	type RevokeDelegationDelay = ConstU32<24>;
853
	/// Rounds before the delegator bond increase/decrease can be executed
854
	type DelegationBondLessDelay = ConstU32<24>;
855
	/// Rounds before the reward is paid
856
	type RewardPaymentDelay = ConstU32<2>;
857
	/// Minimum collators selected per round, default at genesis and minimum forever after
858
	type MinSelectedCandidates = ConstU32<8>;
859
	/// Maximum top delegations per candidate
860
	type MaxTopDelegationsPerCandidate = ConstU32<300>;
861
	/// Maximum bottom delegations per candidate
862
	type MaxBottomDelegationsPerCandidate = ConstU32<50>;
863
	/// Maximum delegations per delegator
864
	type MaxDelegationsPerDelegator = ConstU32<100>;
865
	/// Minimum stake required to be reserved to be a candidate
866
	type MinCandidateStk = ConstU128<{ 500 * currency::MOVR * currency::SUPPLY_FACTOR }>;
867
	/// Minimum stake required to be reserved to be a delegator
868
	type MinDelegation = ConstU128<{ 5 * currency::MOVR * currency::SUPPLY_FACTOR }>;
869
	type BlockAuthor = AuthorInherent;
870
	type OnCollatorPayout = ();
871
	type PayoutCollatorReward = PayoutCollatorOrOrbiterReward;
872
	type OnInactiveCollator = OnInactiveCollator;
873
	type OnNewRound = OnNewRound;
874
	type SlotProvider = RelayChainSlotProvider;
875
	type WeightInfo = moonriver_weights::pallet_parachain_staking::WeightInfo<Runtime>;
876
	type MaxCandidates = ConstU32<200>;
877
	type SlotDuration = ConstU64<6_000>;
878
	type BlockTime = ConstU64<6_000>;
879
}
880

            
881
impl pallet_author_inherent::Config for Runtime {
882
	type SlotBeacon = RelaychainDataProvider<Self>;
883
	type AccountLookup = MoonbeamOrbiters;
884
	type CanAuthor = AuthorFilter;
885
	type AuthorId = AccountId;
886
	type WeightInfo = moonriver_weights::pallet_author_inherent::WeightInfo<Runtime>;
887
}
888

            
889
impl pallet_author_slot_filter::Config for Runtime {
890
	type RuntimeEvent = RuntimeEvent;
891
	type RandomnessSource = Randomness;
892
	type PotentialAuthors = ParachainStaking;
893
	type WeightInfo = moonriver_weights::pallet_author_slot_filter::WeightInfo<Runtime>;
894
}
895

            
896
impl pallet_async_backing::Config for Runtime {
897
	type AllowMultipleBlocksPerSlot = ConstBool<true>;
898
	type GetAndVerifySlot = pallet_async_backing::RelaySlot;
899
	type ExpectedBlockTime = ConstU64<6000>;
900
}
901

            
902
parameter_types! {
903
	pub const InitializationPayment: Perbill = Perbill::from_percent(30);
904
	pub const RelaySignaturesThreshold: Perbill = Perbill::from_percent(100);
905
	pub const SignatureNetworkIdentifier:  &'static [u8] = b"moonriver-";
906

            
907
}
908

            
909
impl pallet_crowdloan_rewards::Config for Runtime {
910
	type RuntimeEvent = RuntimeEvent;
911
	type Initialized = ConstBool<false>;
912
	type InitializationPayment = InitializationPayment;
913
	type MaxInitContributors = ConstU32<500>;
914
	type MinimumReward = ConstU128<0>;
915
	type RewardCurrency = Balances;
916
	type RelayChainAccountId = [u8; 32];
917
	type RewardAddressAssociateOrigin = EnsureSigned<Self::AccountId>;
918
	type RewardAddressChangeOrigin = EnsureSigned<Self::AccountId>;
919
	type RewardAddressRelayVoteThreshold = RelaySignaturesThreshold;
920
	type SignatureNetworkIdentifier = SignatureNetworkIdentifier;
921
	type VestingBlockNumber = relay_chain::BlockNumber;
922
	type VestingBlockProvider = RelaychainDataProvider<Self>;
923
	type WeightInfo = moonriver_weights::pallet_crowdloan_rewards::WeightInfo<Runtime>;
924
}
925

            
926
// This is a simple session key manager. It should probably either work with, or be replaced
927
// entirely by pallet sessions
928
impl pallet_author_mapping::Config for Runtime {
929
	type RuntimeEvent = RuntimeEvent;
930
	type DepositCurrency = Balances;
931
	type DepositAmount = ConstU128<{ 100 * currency::MOVR * currency::SUPPLY_FACTOR }>;
932
	type Keys = session_keys_primitives::VrfId;
933
	type WeightInfo = moonriver_weights::pallet_author_mapping::WeightInfo<Runtime>;
934
}
935

            
936
/// The type used to represent the kinds of proxying allowed.
937
#[derive(
938
	Copy,
939
	Clone,
940
	Eq,
941
	PartialEq,
942
	Ord,
943
	PartialOrd,
944
	Encode,
945
	Decode,
946
	Debug,
947
8
	MaxEncodedLen,
948
64
	TypeInfo,
949
	Serialize,
950
	Deserialize,
951
)]
952
pub enum ProxyType {
953
	/// All calls can be proxied. This is the trivial/most permissive filter.
954
	Any = 0,
955
	/// Only extrinsics that do not transfer funds.
956
	NonTransfer = 1,
957
	/// Only extrinsics related to governance (democracy and collectives).
958
	Governance = 2,
959
	/// Only extrinsics related to staking.
960
	Staking = 3,
961
	/// Allow to veto an announced proxy call.
962
	CancelProxy = 4,
963
	/// Allow extrinsic related to Balances.
964
	Balances = 5,
965
	/// Allow extrinsic related to AuthorMapping.
966
	AuthorMapping = 6,
967
	/// Allow extrinsic related to IdentityJudgement.
968
	IdentityJudgement = 7,
969
}
970

            
971
impl Default for ProxyType {
972
	fn default() -> Self {
973
		Self::Any
974
	}
975
}
976

            
977
fn is_governance_precompile(precompile_name: &precompiles::PrecompileName) -> bool {
978
	matches!(
979
		precompile_name,
980
		PrecompileName::TreasuryCouncilInstance
981
			| PrecompileName::PreimagePrecompile
982
			| PrecompileName::ReferendaPrecompile
983
			| PrecompileName::ConvictionVotingPrecompile
984
			| PrecompileName::OpenTechCommitteeInstance
985
	)
986
}
987

            
988
// Be careful: Each time this filter is modified, the substrate filter must also be modified
989
// consistently.
990
impl pallet_evm_precompile_proxy::EvmProxyCallFilter for ProxyType {
991
	fn is_evm_proxy_call_allowed(
992
		&self,
993
		call: &pallet_evm_precompile_proxy::EvmSubCall,
994
		recipient_has_code: bool,
995
		gas: u64,
996
	) -> precompile_utils::EvmResult<bool> {
997
		Ok(match self {
998
			ProxyType::Any => {
999
				match PrecompileName::from_address(call.to.0) {
					// Any precompile that can execute a subcall should be forbidden here,
					// to ensure that unauthorized smart contract can't be called
					// indirectly.
					// To be safe, we only allow the precompiles we need.
					Some(
						PrecompileName::AuthorMappingPrecompile
						| PrecompileName::ParachainStakingPrecompile,
					) => true,
					Some(ref precompile) if is_governance_precompile(precompile) => true,
					// All non-whitelisted precompiles are forbidden
					Some(_) => false,
					// Allow evm transfer to "simple" account (no code nor precompile)
					// For the moment, no smart contract other than precompiles is allowed.
					// In the future, we may create a dynamic whitelist to authorize some audited
					// smart contracts through governance.
					None => {
						// If the address is not recognized, allow only evm transfert to "simple"
						// accounts (no code nor precompile).
						// Note: Checking the presence of the code is not enough because some
						// precompiles have no code.
						!recipient_has_code
							&& !precompile_utils::precompile_set::is_precompile_or_fail::<Runtime>(
								call.to.0, gas,
							)?
					}
				}
			}
			ProxyType::NonTransfer => {
				call.value == U256::zero()
					&& match PrecompileName::from_address(call.to.0) {
						Some(
							PrecompileName::AuthorMappingPrecompile
							| PrecompileName::ParachainStakingPrecompile,
						) => true,
						Some(ref precompile) if is_governance_precompile(precompile) => true,
						_ => false,
					}
			}
			ProxyType::Governance => {
				call.value == U256::zero()
					&& matches!(
						PrecompileName::from_address(call.to.0),
						Some(ref precompile) if is_governance_precompile(precompile)
					)
			}
			ProxyType::Staking => {
				call.value == U256::zero()
					&& matches!(
						PrecompileName::from_address(call.to.0),
						Some(
							PrecompileName::AuthorMappingPrecompile
								| PrecompileName::ParachainStakingPrecompile
						)
					)
			}
			// The proxy precompile does not contain method cancel_proxy
			ProxyType::CancelProxy => false,
			ProxyType::Balances => {
				// Allow only "simple" accounts as recipient (no code nor precompile).
				// Note: Checking the presence of the code is not enough because some precompiles
				// have no code.
				!recipient_has_code
					&& !precompile_utils::precompile_set::is_precompile_or_fail::<Runtime>(
						call.to.0, gas,
					)?
			}
			ProxyType::AuthorMapping => {
				call.value == U256::zero()
					&& matches!(
						PrecompileName::from_address(call.to.0),
						Some(PrecompileName::AuthorMappingPrecompile)
					)
			}
			// There is no identity precompile
			ProxyType::IdentityJudgement => false,
		})
	}
}
// Be careful: Each time this filter is modified, the EVM filter must also be modified consistently.
impl InstanceFilter<RuntimeCall> for ProxyType {
	fn filter(&self, c: &RuntimeCall) -> bool {
		match self {
			ProxyType::Any => true,
			ProxyType::NonTransfer => {
				matches!(
					c,
					RuntimeCall::System(..)
						| RuntimeCall::ParachainSystem(..)
						| RuntimeCall::Timestamp(..)
						| RuntimeCall::ParachainStaking(..)
						| RuntimeCall::Referenda(..)
						| RuntimeCall::Preimage(..)
						| RuntimeCall::ConvictionVoting(..)
						| RuntimeCall::TreasuryCouncilCollective(..)
						| RuntimeCall::OpenTechCommitteeCollective(..)
						| RuntimeCall::Identity(..)
						| RuntimeCall::Utility(..)
						| RuntimeCall::Proxy(..) | RuntimeCall::AuthorMapping(..)
						| RuntimeCall::CrowdloanRewards(
							pallet_crowdloan_rewards::Call::claim { .. }
						)
				)
			}
			ProxyType::Governance => matches!(
				c,
				RuntimeCall::Referenda(..)
					| RuntimeCall::Preimage(..)
					| RuntimeCall::ConvictionVoting(..)
					| RuntimeCall::TreasuryCouncilCollective(..)
					| RuntimeCall::OpenTechCommitteeCollective(..)
					| RuntimeCall::Utility(..)
			),
			ProxyType::Staking => matches!(
				c,
				RuntimeCall::ParachainStaking(..)
					| RuntimeCall::Utility(..)
					| RuntimeCall::AuthorMapping(..)
					| RuntimeCall::MoonbeamOrbiters(..)
			),
			ProxyType::CancelProxy => matches!(
				c,
				RuntimeCall::Proxy(pallet_proxy::Call::reject_announcement { .. })
			),
			ProxyType::Balances => {
				matches!(c, RuntimeCall::Balances(..) | RuntimeCall::Utility(..))
			}
			ProxyType::AuthorMapping => matches!(c, RuntimeCall::AuthorMapping(..)),
			ProxyType::IdentityJudgement => matches!(
				c,
				RuntimeCall::Identity(pallet_identity::Call::provide_judgement { .. })
					| RuntimeCall::Utility(..)
			),
		}
	}
	fn is_superset(&self, o: &Self) -> bool {
		match (self, o) {
			(x, y) if x == y => true,
			(ProxyType::Any, _) => true,
			(_, ProxyType::Any) => false,
			_ => false,
		}
	}
}
impl pallet_proxy::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
	type RuntimeCall = RuntimeCall;
	type Currency = Balances;
	type ProxyType = ProxyType;
	// One storage item; key size 32, value size 8
	type ProxyDepositBase = ConstU128<{ currency::deposit(1, 8) }>;
	// Additional storage item size of 21 bytes (20 bytes AccountId + 1 byte sizeof(ProxyType)).
	type ProxyDepositFactor = ConstU128<{ currency::deposit(0, 21) }>;
	type MaxProxies = ConstU32<32>;
	type WeightInfo = moonriver_weights::pallet_proxy::WeightInfo<Runtime>;
	type MaxPending = ConstU32<32>;
	type CallHasher = BlakeTwo256;
	type AnnouncementDepositBase = ConstU128<{ currency::deposit(1, 8) }>;
	// Additional storage item size of 56 bytes:
	// - 20 bytes AccountId
	// - 32 bytes Hasher (Blake2256)
	// - 4 bytes BlockNumber (u32)
	type AnnouncementDepositFactor = ConstU128<{ currency::deposit(0, 56) }>;
}
impl pallet_migrations::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
	type MigrationsList = (
		moonbeam_runtime_common::migrations::CommonMigrations<Runtime>,
		migrations::MoonriverMigrations,
	);
	type XcmExecutionManager = XcmExecutionManager;
}
impl pallet_moonbeam_lazy_migrations::Config for Runtime {
	type WeightInfo = moonriver_weights::pallet_moonbeam_lazy_migrations::WeightInfo<Runtime>;
}
/// Maintenance mode Call filter
pub struct MaintenanceFilter;
impl Contains<RuntimeCall> for MaintenanceFilter {
	fn contains(c: &RuntimeCall) -> bool {
		match c {
			RuntimeCall::Assets(_) => false,
			RuntimeCall::Balances(_) => false,
			RuntimeCall::CrowdloanRewards(_) => false,
			RuntimeCall::Ethereum(_) => false,
			RuntimeCall::EVM(_) => false,
			RuntimeCall::Identity(_) => false,
			RuntimeCall::ParachainStaking(_) => false,
			RuntimeCall::MoonbeamOrbiters(_) => false,
			RuntimeCall::PolkadotXcm(_) => false,
			RuntimeCall::Treasury(_) => false,
			RuntimeCall::XcmTransactor(_) => false,
			RuntimeCall::EthereumXcm(_) => false,
			_ => true,
		}
	}
}
/// Normal Call Filter
/// We dont allow to create nor mint assets, this for now is disabled
/// We only allow transfers. For now creation of assets will go through
/// asset-manager, while minting/burning only happens through xcm messages
/// This can change in the future
pub struct NormalFilter;
impl Contains<RuntimeCall> for NormalFilter {
208
	fn contains(c: &RuntimeCall) -> bool {
		match c {
24
			RuntimeCall::Assets(method) => match method {
8
				pallet_assets::Call::transfer { .. } => true,
				pallet_assets::Call::transfer_keep_alive { .. } => true,
8
				pallet_assets::Call::approve_transfer { .. } => true,
8
				pallet_assets::Call::transfer_approved { .. } => true,
				pallet_assets::Call::cancel_approval { .. } => true,
				pallet_assets::Call::destroy_accounts { .. } => true,
				pallet_assets::Call::destroy_approvals { .. } => true,
				pallet_assets::Call::finish_destroy { .. } => true,
				_ => false,
			},
			// We just want to enable this in case of live chains, since the default version
			// is populated at genesis
24
			RuntimeCall::PolkadotXcm(method) => match method {
				pallet_xcm::Call::force_default_xcm_version { .. } => true,
16
				pallet_xcm::Call::transfer_assets { .. } => true,
				pallet_xcm::Call::transfer_assets_using_type_and_then { .. } => true,
8
				_ => false,
			},
			// We filter anonymous proxy as they make "reserve" inconsistent
			// See: https://github.com/paritytech/substrate/blob/37cca710eed3dadd4ed5364c7686608f5175cce1/frame/proxy/src/lib.rs#L270 // editorconfig-checker-disable-line
			RuntimeCall::Proxy(method) => match method {
				pallet_proxy::Call::create_pure { .. } => false,
				pallet_proxy::Call::kill_pure { .. } => false,
				pallet_proxy::Call::proxy { real, .. } => {
					!pallet_evm::AccountCodes::<Runtime>::contains_key(H160::from(*real))
				}
				_ => true,
			},
			// Filtering the EVM prevents possible re-entrancy from the precompiles which could
			// lead to unexpected scenarios.
			// See https://github.com/PureStake/sr-moonbeam/issues/30
			// Note: It is also assumed that EVM calls are only allowed through `Origin::Root` so
			// this can be seen as an additional security
			RuntimeCall::EVM(_) => false,
			RuntimeCall::Treasury(
				pallet_treasury::Call::spend { .. }
				| pallet_treasury::Call::payout { .. }
				| pallet_treasury::Call::check_status { .. }
				| pallet_treasury::Call::void_spend { .. },
			) => false,
160
			_ => true,
		}
208
	}
}
pub struct XcmExecutionManager;
impl moonkit_xcm_primitives::PauseXcmExecution for XcmExecutionManager {
	fn suspend_xcm_execution() -> DispatchResult {
		XcmpQueue::suspend_xcm_execution(RuntimeOrigin::root())
	}
	fn resume_xcm_execution() -> DispatchResult {
		XcmpQueue::resume_xcm_execution(RuntimeOrigin::root())
	}
}
impl pallet_maintenance_mode::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
	type NormalCallFilter = NormalFilter;
	type MaintenanceCallFilter = MaintenanceFilter;
	type MaintenanceOrigin =
		pallet_collective::EnsureProportionAtLeast<AccountId, OpenTechCommitteeInstance, 5, 9>;
	type XcmExecutionManager = XcmExecutionManager;
}
impl pallet_proxy_genesis_companion::Config for Runtime {
	type ProxyType = ProxyType;
}
parameter_types! {
	pub OrbiterReserveIdentifier: [u8; 4] = [b'o', b'r', b'b', b'i'];
}
type AddCollatorOrigin =
	EitherOfDiverse<EnsureRoot<AccountId>, governance::custom_origins::GeneralAdmin>;
type DelCollatorOrigin =
	EitherOfDiverse<EnsureRoot<AccountId>, governance::custom_origins::GeneralAdmin>;
impl pallet_moonbeam_orbiters::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
	type AccountLookup = AuthorMapping;
	type AddCollatorOrigin = AddCollatorOrigin;
	type Currency = Balances;
	type DelCollatorOrigin = DelCollatorOrigin;
	/// Maximum number of orbiters per collator
	type MaxPoolSize = ConstU32<8>;
	/// Maximum number of round to keep on storage
	type MaxRoundArchive = ConstU32<4>;
	type OrbiterReserveIdentifier = OrbiterReserveIdentifier;
	type RotatePeriod = ConstU32<3>;
	/// Round index type.
	type RoundIndex = pallet_parachain_staking::RoundIndex;
	type WeightInfo = moonriver_weights::pallet_moonbeam_orbiters::WeightInfo<Runtime>;
}
/// Only callable after `set_validation_data` is called which forms this proof the same way
fn relay_chain_state_proof<Runtime>() -> RelayChainStateProof
where
	Runtime: cumulus_pallet_parachain_system::Config,
{
	let relay_storage_root = ValidationData::<Runtime>::get()
		.expect("set in `set_validation_data`")
		.relay_parent_storage_root;
	let relay_chain_state =
		RelayStateProof::<Runtime>::get().expect("set in `set_validation_data`");
	RelayChainStateProof::new(ParachainInfo::get(), relay_storage_root, relay_chain_state)
		.expect("Invalid relay chain state proof, already constructed in `set_validation_data`")
}
pub struct BabeDataGetter<Runtime>(sp_std::marker::PhantomData<Runtime>);
impl<Runtime> pallet_randomness::GetBabeData<u64, Option<Hash>> for BabeDataGetter<Runtime>
where
	Runtime: cumulus_pallet_parachain_system::Config,
{
	// Tolerate panic here because only ever called in inherent (so can be omitted)
	fn get_epoch_index() -> u64 {
		if cfg!(feature = "runtime-benchmarks") {
			// storage reads as per actual reads
			let _relay_storage_root = ValidationData::<Runtime>::get();
			let _relay_chain_state = RelayStateProof::<Runtime>::get();
			const BENCHMARKING_NEW_EPOCH: u64 = 10u64;
			return BENCHMARKING_NEW_EPOCH;
		}
		relay_chain_state_proof::<Runtime>()
			.read_optional_entry(relay_chain::well_known_keys::EPOCH_INDEX)
			.ok()
			.flatten()
			.expect("expected to be able to read epoch index from relay chain state proof")
	}
	fn get_epoch_randomness() -> Option<Hash> {
		if cfg!(feature = "runtime-benchmarks") {
			// storage reads as per actual reads
			let _relay_storage_root = ValidationData::<Runtime>::get();
			let _relay_chain_state = RelayStateProof::<Runtime>::get();
			let benchmarking_babe_output = Hash::default();
			return Some(benchmarking_babe_output);
		}
		relay_chain_state_proof::<Runtime>()
			.read_optional_entry(relay_chain::well_known_keys::ONE_EPOCH_AGO_RANDOMNESS)
			.ok()
			.flatten()
	}
}
impl pallet_randomness::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
	type AddressMapping = sp_runtime::traits::ConvertInto;
	type Currency = Balances;
	type BabeDataGetter = BabeDataGetter<Runtime>;
	type VrfKeyLookup = AuthorMapping;
	type Deposit = runtime_params::PalletRandomnessDepositU128;
	type MaxRandomWords = ConstU8<100>;
	type MinBlockDelay = ConstU32<2>;
	type MaxBlockDelay = ConstU32<2_000>;
	type BlockExpirationDelay = ConstU32<10_000>;
	type EpochExpirationDelay = ConstU64<10_000>;
	type WeightInfo = moonriver_weights::pallet_randomness::WeightInfo<Runtime>;
}
impl pallet_root_testing::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
}
parameter_types! {
	// One storage item; key size is 32 + 20; value is size 4+4+16+20 bytes = 44 bytes.
	pub const DepositBase: Balance = currency::deposit(1, 96);
	// Additional storage item size of 20 bytes.
	pub const DepositFactor: Balance = currency::deposit(0, 20);
	pub const MaxSignatories: u32 = 100;
}
impl pallet_multisig::Config for Runtime {
	type RuntimeEvent = RuntimeEvent;
	type RuntimeCall = RuntimeCall;
	type Currency = Balances;
	type DepositBase = DepositBase;
	type DepositFactor = DepositFactor;
	type MaxSignatories = MaxSignatories;
	type WeightInfo = moonriver_weights::pallet_multisig::WeightInfo<Runtime>;
}
impl pallet_relay_storage_roots::Config for Runtime {
	type MaxStorageRoots = ConstU32<30>;
	type RelaychainStateProvider = cumulus_pallet_parachain_system::RelaychainDataProvider<Self>;
	type WeightInfo = moonriver_weights::pallet_relay_storage_roots::WeightInfo<Runtime>;
}
impl pallet_precompile_benchmarks::Config for Runtime {
	type WeightInfo = moonriver_weights::pallet_precompile_benchmarks::WeightInfo<Runtime>;
}
impl pallet_parameters::Config for Runtime {
	type AdminOrigin = EnsureRoot<AccountId>;
	type RuntimeEvent = RuntimeEvent;
	type RuntimeParameters = RuntimeParameters;
	type WeightInfo = moonriver_weights::pallet_parameters::WeightInfo<Runtime>;
}
745014
construct_runtime! {
	pub enum Runtime
	{
		// System support stuff.
		System: frame_system::{Pallet, Call, Storage, Config<T>, Event<T>} = 0,
		ParachainSystem: cumulus_pallet_parachain_system::{Pallet, Call, Storage, Inherent, Event<T>} = 1,
		// Previously 2: pallet_randomness_collective_flip
		Timestamp: pallet_timestamp::{Pallet, Call, Storage, Inherent} = 3,
		ParachainInfo: parachain_info::{Pallet, Storage, Config<T>} = 4,
		RootTesting: pallet_root_testing::{Pallet, Call, Storage, Event<T>} = 5,
		// Monetary stuff.
		Balances: pallet_balances::{Pallet, Call, Storage, Config<T>, Event<T>} = 10,
		TransactionPayment: pallet_transaction_payment::{Pallet, Storage, Config<T>, Event<T>} = 11,
		// Consensus support.
		ParachainStaking: pallet_parachain_staking::{Pallet, Call, Storage, Event<T>, Config<T>} = 20,
		AuthorInherent: pallet_author_inherent::{Pallet, Call, Storage, Inherent} = 21,
		AuthorFilter: pallet_author_slot_filter::{Pallet, Call, Storage, Event, Config<T>} = 22,
		AuthorMapping: pallet_author_mapping::{Pallet, Call, Config<T>, Storage, Event<T>} = 23,
		MoonbeamOrbiters: pallet_moonbeam_orbiters::{Pallet, Call, Storage, Event<T>} = 24,
		AsyncBacking: pallet_async_backing::{Pallet, Storage} = 25,
		// Handy utilities.
		Utility: pallet_utility::{Pallet, Call, Event} = 30,
		Proxy: pallet_proxy::{Pallet, Call, Storage, Event<T>} = 31,
		MaintenanceMode: pallet_maintenance_mode::{Pallet, Call, Config<T>, Storage, Event} = 32,
		Identity: pallet_identity::{Pallet, Call, Storage, Event<T>} = 33,
		Migrations: pallet_migrations::{Pallet, Storage, Config<T>, Event<T>} = 34,
		ProxyGenesisCompanion: pallet_proxy_genesis_companion::{Pallet, Config<T>} = 35,
		Multisig: pallet_multisig::{Pallet, Call, Storage, Event<T>} = 36,
		MoonbeamLazyMigrations: pallet_moonbeam_lazy_migrations::{Pallet, Call, Storage} = 37,
		Parameters: pallet_parameters = 38,
		// Sudo was previously index 40
		// Ethereum compatibility
		EthereumChainId: pallet_evm_chain_id::{Pallet, Storage, Config<T>} = 50,
		EVM: pallet_evm::{Pallet, Config<T>, Call, Storage, Event<T>} = 51,
		Ethereum: pallet_ethereum::{Pallet, Call, Storage, Event, Origin, Config<T>} = 52,
		// Governance stuff.
		Scheduler: pallet_scheduler::{Pallet, Storage, Event<T>, Call} = 60,
		// Democracy:  61,
		Preimage: pallet_preimage::{Pallet, Call, Storage, Event<T>, HoldReason} = 62,
		ConvictionVoting: pallet_conviction_voting::{Pallet, Call, Storage, Event<T>} = 63,
		Referenda: pallet_referenda::{Pallet, Call, Storage, Event<T>} = 64,
		Origins: governance::custom_origins::{Origin} = 65,
		Whitelist: pallet_whitelist::{Pallet, Call, Storage, Event<T>} = 66,
		// Council stuff.
		// CouncilCollective: 70
		// TechCommitteeCollective: 71,
		TreasuryCouncilCollective:
			pallet_collective::<Instance3>::{Pallet, Call, Storage, Event<T>, Origin<T>, Config<T>} = 72,
		OpenTechCommitteeCollective:
			pallet_collective::<Instance4>::{Pallet, Call, Storage, Event<T>, Origin<T>, Config<T>} = 73,
		// Treasury stuff.
		Treasury: pallet_treasury::{Pallet, Storage, Config<T>, Event<T>, Call} = 80,
		// Crowdloan stuff.
		CrowdloanRewards: pallet_crowdloan_rewards::{Pallet, Call, Config<T>, Storage, Event<T>} = 90,
		// XCM Stuff
		XcmpQueue: cumulus_pallet_xcmp_queue::{Pallet, Storage, Event<T>} = 100,
		CumulusXcm: cumulus_pallet_xcm::{Pallet, Event<T>, Origin} = 101,
		// Previously 102: DmpQueue: cumulus_pallet_dmp_queue::{Pallet, Call, Storage, Event<T>}
		PolkadotXcm: pallet_xcm::{Pallet, Storage, Call, Event<T>, Origin, Config<T>} = 103,
		Assets: pallet_assets::{Pallet, Call, Storage, Event<T>} = 104,
		AssetManager: pallet_asset_manager::{Pallet, Call, Storage, Event<T>} = 105,
		// Previously 106: XTokens
		XcmTransactor: pallet_xcm_transactor::{Pallet, Call, Storage, Event<T>} = 107,
		// Previously 108: pallet_assets::<Instance1>
		EthereumXcm: pallet_ethereum_xcm::{Pallet, Call, Storage, Origin, Event<T>} = 109,
		Erc20XcmBridge: pallet_erc20_xcm_bridge::{Pallet} = 110,
		MessageQueue: pallet_message_queue::{Pallet, Call, Storage, Event<T>} = 111,
		EvmForeignAssets: pallet_moonbeam_foreign_assets::{Pallet, Call, Storage, Event<T>} = 114,
		XcmWeightTrader: pallet_xcm_weight_trader::{Pallet, Call, Storage, Event<T>} = 115,
		EmergencyParaXcm: pallet_emergency_para_xcm::{Pallet, Call, Storage, Event} = 116,
		// Utils
		RelayStorageRoots: pallet_relay_storage_roots::{Pallet, Storage} = 112,
		PrecompileBenchmarks: pallet_precompile_benchmarks::{Pallet} = 113,
		// Randomness
		Randomness: pallet_randomness::{Pallet, Call, Storage, Event<T>, Inherent} = 120,
	}
3608788
}
#[cfg(feature = "runtime-benchmarks")]
use moonbeam_runtime_common::benchmarking::BenchmarkHelper;
#[cfg(feature = "runtime-benchmarks")]
mod benches {
	frame_support::parameter_types! {
		pub const MaxBalance: crate::Balance = crate::Balance::max_value();
	}
	frame_benchmarking::define_benchmarks!(
		[pallet_utility, Utility]
		[pallet_timestamp, Timestamp]
		[pallet_balances, Balances]
		[pallet_evm, EVM]
		[pallet_assets, Assets]
		[pallet_parachain_staking, ParachainStaking]
		[pallet_scheduler, Scheduler]
		[pallet_treasury, Treasury]
		[pallet_author_inherent, AuthorInherent]
		[pallet_author_slot_filter, AuthorFilter]
		[pallet_crowdloan_rewards, CrowdloanRewards]
		[pallet_author_mapping, AuthorMapping]
		[pallet_proxy, Proxy]
		[pallet_identity, Identity]
		[cumulus_pallet_parachain_system, ParachainSystem]
		[cumulus_pallet_xcmp_queue, XcmpQueue]
		[pallet_message_queue, MessageQueue]
		[pallet_xcm, PalletXcmExtrinsicsBenchmark::<Runtime>]
		[pallet_asset_manager, AssetManager]
		[pallet_xcm_transactor, XcmTransactor]
		[pallet_moonbeam_foreign_assets, EvmForeignAssets]
		[pallet_moonbeam_orbiters, MoonbeamOrbiters]
		[pallet_randomness, Randomness]
		[pallet_conviction_voting, ConvictionVoting]
		[pallet_referenda, Referenda]
		[pallet_preimage, Preimage]
		[pallet_whitelist, Whitelist]
		[pallet_multisig, Multisig]
		[pallet_relay_storage_roots, RelayStorageRoots]
		[pallet_precompile_benchmarks, PrecompileBenchmarks]
		[pallet_parameters, Parameters]
		[pallet_xcm_weight_trader, XcmWeightTrader]
	);
}
/// Block type as expected by this runtime.
pub type Block = generic::Block<Header, UncheckedExtrinsic>;
/// A Block signed with a Justification
pub type SignedBlock = generic::SignedBlock<Block>;
/// BlockId type as expected by this runtime.
pub type BlockId = generic::BlockId<Block>;
/// The SignedExtension to the basic transaction logic.
pub type SignedExtra = (
	frame_system::CheckNonZeroSender<Runtime>,
	frame_system::CheckSpecVersion<Runtime>,
	frame_system::CheckTxVersion<Runtime>,
	frame_system::CheckGenesis<Runtime>,
	frame_system::CheckEra<Runtime>,
	frame_system::CheckNonce<Runtime>,
	frame_system::CheckWeight<Runtime>,
	pallet_transaction_payment::ChargeTransactionPayment<Runtime>,
	frame_metadata_hash_extension::CheckMetadataHash<Runtime>,
	cumulus_primitives_storage_weight_reclaim::StorageWeightReclaim<Runtime>,
);
/// Unchecked extrinsic type as expected by this runtime.
pub type UncheckedExtrinsic =
	fp_self_contained::UncheckedExtrinsic<Address, RuntimeCall, Signature, SignedExtra>;
/// Extrinsic type that has already been checked.
pub type CheckedExtrinsic =
	fp_self_contained::CheckedExtrinsic<AccountId, RuntimeCall, SignedExtra, H160>;
/// Executive: handles dispatch to the various pallets.
pub type Executive = frame_executive::Executive<
	Runtime,
	Block,
	frame_system::ChainContext<Runtime>,
	Runtime,
	AllPalletsWithSystem,
>;
// All of our runtimes share most of their Runtime API implementations.
// We use a macro to implement this common part and add runtime-specific additional implementations.
// This macro expands to :
// ```
// impl_runtime_apis! {
//     // All impl blocks shared between all runtimes.
//
//     // Specific impls provided to the `impl_runtime_apis_plus_common!` macro.
// }
// ```
64
moonbeam_runtime_common::impl_runtime_apis_plus_common! {
64
	impl sp_transaction_pool::runtime_api::TaggedTransactionQueue<Block> for Runtime {
64
		fn validate_transaction(
			source: TransactionSource,
			xt: <Block as BlockT>::Extrinsic,
			block_hash: <Block as BlockT>::Hash,
		) -> TransactionValidity {
			// Filtered calls should not enter the tx pool as they'll fail if inserted.
			// If this call is not allowed, we return early.
			if !<Runtime as frame_system::Config>::BaseCallFilter::contains(&xt.0.function) {
64
				return InvalidTransaction::Call.into();
64
			}
64

            
64
			// This runtime uses Substrate's pallet transaction payment. This
64
			// makes the chain feel like a standard Substrate chain when submitting
64
			// frame transactions and using Substrate ecosystem tools. It has the downside that
64
			// transaction are not prioritized by gas_price. The following code reprioritizes
64
			// transactions to overcome this.
64
			//
64
			// A more elegant, ethereum-first solution is
64
			// a pallet that replaces pallet transaction payment, and allows users
64
			// to directly specify a gas price rather than computing an effective one.
64
			// #HopefullySomeday
64

            
64
			// First we pass the transactions to the standard FRAME executive. This calculates all the
64
			// necessary tags, longevity and other properties that we will leave unchanged.
64
			// This also assigns some priority that we don't care about and will overwrite next.
64
			let mut intermediate_valid = Executive::validate_transaction(source, xt.clone(), block_hash)?;
64

            
64
			let dispatch_info = xt.get_dispatch_info();
64

            
64
			// If this is a pallet ethereum transaction, then its priority is already set
64
			// according to gas price from pallet ethereum. If it is any other kind of transaction,
64
			// we modify its priority.
64
			Ok(match &xt.0.function {
64
				RuntimeCall::Ethereum(transact { .. }) => intermediate_valid,
64
				_ if dispatch_info.class != DispatchClass::Normal => intermediate_valid,
64
				_ => {
64
					let tip = match xt.0.signature {
64
						None => 0,
64
						Some((_, _, ref signed_extra)) => {
							// Yuck, this depends on the index of charge transaction in Signed Extra
							let charge_transaction = &signed_extra.7;
							charge_transaction.tip()
64
						}
64
					};
64

            
64
					// Calculate the fee that will be taken by pallet transaction payment
64
					let fee: u64 = TransactionPayment::compute_fee(
						xt.encode().len() as u32,
						&dispatch_info,
						tip,
					).saturated_into();
					// Calculate how much gas this effectively uses according to the existing mapping
					let effective_gas =
						<Runtime as pallet_evm::Config>::GasWeightMapping::weight_to_gas(
							dispatch_info.weight
						);
64

            
64
					// Here we calculate an ethereum-style effective gas price using the
64
					// current fee of the transaction. Because the weight -> gas conversion is
64
					// lossy, we have to handle the case where a very low weight maps to zero gas.
64
					let effective_gas_price = if effective_gas > 0 {
64
						fee / effective_gas
64
					} else {
64
						// If the effective gas was zero, we just act like it was 1.
64
						fee
64
					};
64

            
64
					// Overwrite the original prioritization with this ethereum one
64
					intermediate_valid.priority = effective_gas_price;
					intermediate_valid
64
				}
64
			})
64
		}
64
	}
64

            
64
	impl async_backing_primitives::UnincludedSegmentApi<Block> for Runtime {
64
		fn can_build_upon(
			included_hash: <Block as BlockT>::Hash,
			slot: async_backing_primitives::Slot,
		) -> bool {
			ConsensusHook::can_build_upon(included_hash, slot)
		}
64
	}
64
}
struct CheckInherents;
// Parity has decided to depreciate this trait, but does not offer a satisfactory replacement,
// see issue: https://github.com/paritytech/polkadot-sdk/issues/2841
#[allow(deprecated)]
impl cumulus_pallet_parachain_system::CheckInherents<Block> for CheckInherents {
	fn check_inherents(
		block: &Block,
		relay_state_proof: &cumulus_pallet_parachain_system::RelayChainStateProof,
	) -> sp_inherents::CheckInherentsResult {
		let relay_chain_slot = relay_state_proof
			.read_slot()
			.expect("Could not read the relay chain slot from the proof");
		let inherent_data =
			cumulus_primitives_timestamp::InherentDataProvider::from_relay_chain_slot_and_duration(
				relay_chain_slot,
				sp_std::time::Duration::from_secs(6),
			)
			.create_inherent_data()
			.expect("Could not create the timestamp inherent data");
		inherent_data.check_extrinsics(block)
	}
}
// Nimbus's Executive wrapper allows relay validators to verify the seal digest
cumulus_pallet_parachain_system::register_validate_block!(
	Runtime = Runtime,
	BlockExecutor = pallet_author_inherent::BlockExecutor::<Runtime, Executive>,
	CheckInherents = CheckInherents,
);
moonbeam_runtime_common::impl_self_contained_call!();
// Shorthand for a Get field of a pallet Config.
#[macro_export]
macro_rules! get {
	($pallet:ident, $name:ident, $type:ty) => {
		<<$crate::Runtime as $pallet::Config>::$name as $crate::Get<$type>>::get()
	};
}
#[cfg(test)]
mod tests {
	use super::{currency::*, *};
	#[test]
	// Helps us to identify a Pallet Call in case it exceeds the 1kb limit.
	// Hint: this should be a rare case. If that happens, one or more of the dispatchable arguments
	// need to be Boxed.
1
	fn call_max_size() {
1
		const CALL_ALIGN: u32 = 1024;
1
		assert!(std::mem::size_of::<pallet_evm_chain_id::Call<Runtime>>() <= CALL_ALIGN as usize);
1
		assert!(std::mem::size_of::<pallet_evm::Call<Runtime>>() <= CALL_ALIGN as usize);
1
		assert!(std::mem::size_of::<pallet_ethereum::Call<Runtime>>() <= CALL_ALIGN as usize);
1
		assert!(
1
			std::mem::size_of::<pallet_parachain_staking::Call<Runtime>>() <= CALL_ALIGN as usize
1
		);
1
		assert!(
1
			std::mem::size_of::<pallet_author_inherent::Call<Runtime>>() <= CALL_ALIGN as usize
1
		);
1
		assert!(
1
			std::mem::size_of::<pallet_author_slot_filter::Call<Runtime>>() <= CALL_ALIGN as usize
1
		);
1
		assert!(
1
			std::mem::size_of::<pallet_crowdloan_rewards::Call<Runtime>>() <= CALL_ALIGN as usize
1
		);
1
		assert!(std::mem::size_of::<pallet_author_mapping::Call<Runtime>>() <= CALL_ALIGN as usize);
1
		assert!(
1
			std::mem::size_of::<pallet_maintenance_mode::Call<Runtime>>() <= CALL_ALIGN as usize
1
		);
1
		assert!(std::mem::size_of::<pallet_migrations::Call<Runtime>>() <= CALL_ALIGN as usize);
1
		assert!(
1
			std::mem::size_of::<pallet_moonbeam_lazy_migrations::Call<Runtime>>()
1
				<= CALL_ALIGN as usize
1
		);
1
		assert!(
1
			std::mem::size_of::<pallet_proxy_genesis_companion::Call<Runtime>>()
1
				<= CALL_ALIGN as usize
1
		);
1
	}
	#[test]
1
	fn currency_constants_are_correct() {
1
		assert_eq!(SUPPLY_FACTOR, 1);
		// txn fees
1
		assert_eq!(TRANSACTION_BYTE_FEE, Balance::from(1 * GIGAWEI));
1
		assert_eq!(
1
			get!(pallet_transaction_payment, OperationalFeeMultiplier, u8),
1
			5_u8
1
		);
1
		assert_eq!(STORAGE_BYTE_FEE, Balance::from(100 * MICROMOVR));
		// pallet_identity deposits
1
		assert_eq!(
1
			get!(pallet_identity, BasicDeposit, u128),
1
			Balance::from(1 * MOVR + 25800 * MICROMOVR)
1
		);
1
		assert_eq!(
1
			get!(pallet_identity, ByteDeposit, u128),
1
			Balance::from(100 * MICROMOVR)
1
		);
1
		assert_eq!(
1
			get!(pallet_identity, SubAccountDeposit, u128),
1
			Balance::from(1 * MOVR + 5300 * MICROMOVR)
1
		);
		// staking minimums
1
		assert_eq!(
1
			get!(pallet_parachain_staking, MinCandidateStk, u128),
1
			Balance::from(500 * MOVR)
1
		);
1
		assert_eq!(
1
			get!(pallet_parachain_staking, MinDelegation, u128),
1
			Balance::from(5 * MOVR)
1
		);
		// crowdloan min reward
1
		assert_eq!(
1
			get!(pallet_crowdloan_rewards, MinimumReward, u128),
1
			Balance::from(0u128)
1
		);
		// deposit for AuthorMapping
1
		assert_eq!(
1
			get!(pallet_author_mapping, DepositAmount, u128),
1
			Balance::from(100 * MOVR)
1
		);
		// proxy deposits
1
		assert_eq!(
1
			get!(pallet_proxy, ProxyDepositBase, u128),
1
			Balance::from(1 * MOVR + 800 * MICROMOVR)
1
		);
1
		assert_eq!(
1
			get!(pallet_proxy, ProxyDepositFactor, u128),
1
			Balance::from(2100 * MICROMOVR)
1
		);
1
		assert_eq!(
1
			get!(pallet_proxy, AnnouncementDepositBase, u128),
1
			Balance::from(1 * MOVR + 800 * MICROMOVR)
1
		);
1
		assert_eq!(
1
			get!(pallet_proxy, AnnouncementDepositFactor, u128),
1
			Balance::from(5600 * MICROMOVR)
1
		);
1
	}
	#[test]
1
	fn max_offline_rounds_lower_or_eq_than_reward_payment_delay() {
1
		assert!(
1
			get!(pallet_parachain_staking, MaxOfflineRounds, u32)
1
				<= get!(pallet_parachain_staking, RewardPaymentDelay, u32)
1
		);
1
	}
	#[test]
	// Required migration is
	// pallet_parachain_staking::migrations::IncreaseMaxTopDelegationsPerCandidate
	// Purpose of this test is to remind of required migration if constant is ever changed
1
	fn updating_maximum_delegators_per_candidate_requires_configuring_required_migration() {
1
		assert_eq!(
1
			get!(pallet_parachain_staking, MaxTopDelegationsPerCandidate, u32),
1
			300
1
		);
1
		assert_eq!(
1
			get!(
1
				pallet_parachain_staking,
1
				MaxBottomDelegationsPerCandidate,
1
				u32
1
			),
1
			50
1
		);
1
	}
	#[test]
1
	fn configured_base_extrinsic_weight_is_evm_compatible() {
1
		let min_ethereum_transaction_weight = WeightPerGas::get() * 21_000;
1
		let base_extrinsic = <Runtime as frame_system::Config>::BlockWeights::get()
1
			.get(frame_support::dispatch::DispatchClass::Normal)
1
			.base_extrinsic;
1
		assert!(base_extrinsic.ref_time() <= min_ethereum_transaction_weight.ref_time());
1
	}
	#[test]
1
	fn test_storage_growth_ratio_is_correct() {
1
		// This is the highest amount of new storage that can be created in a block 40 KB
1
		let block_storage_limit = 160 * 1024;
1
		let expected_storage_growth_ratio = BlockGasLimit::get()
1
			.low_u64()
1
			.saturating_div(block_storage_limit);
1
		let actual_storage_growth_ratio =
1
			<Runtime as pallet_evm::Config>::GasLimitStorageGrowthRatio::get();
1
		assert_eq!(
			expected_storage_growth_ratio, actual_storage_growth_ratio,
			"Storage growth ratio is not correct"
		);
1
	}
}