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// Copyright (C) Moondance Labs Ltd.
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// This file is part of Tanssi.
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// Tanssi 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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// Tanssi 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 Tanssi.  If not, see <http://www.gnu.org/licenses/>
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//! The Starlight runtime for v1 parachains.
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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.
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#![recursion_limit = "512"]
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extern crate alloc;
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use frame_support::storage::{with_storage_layer, with_transaction};
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// Fix compile error in impl_runtime_weights! macro
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use {
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    authority_discovery_primitives::AuthorityId as AuthorityDiscoveryId,
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    beefy_primitives::{
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        ecdsa_crypto::{AuthorityId as BeefyId, Signature as BeefySignature},
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        mmr::{BeefyDataProvider, MmrLeafVersion},
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    },
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    cumulus_primitives_core::relay_chain::{HeadData, ValidationCode},
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    dp_container_chain_genesis_data::ContainerChainGenesisDataItem,
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    frame_support::{
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        dispatch::DispatchResult,
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        dynamic_params::{dynamic_pallet_params, dynamic_params},
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        traits::{
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            fungible::Inspect,
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            tokens::{PayFromAccount, UnityAssetBalanceConversion},
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            ConstBool, Contains, EverythingBut,
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        },
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    },
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    frame_system::{pallet_prelude::BlockNumberFor, EnsureNever},
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    nimbus_primitives::NimbusId,
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    pallet_collator_assignment::{GetRandomnessForNextBlock, RotateCollatorsEveryNSessions},
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    pallet_initializer as tanssi_initializer,
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    pallet_invulnerables::InvulnerableRewardDistribution,
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    pallet_registrar::Error as ContainerRegistrarError,
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    pallet_registrar_runtime_api::ContainerChainGenesisData,
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    pallet_services_payment::{ProvideBlockProductionCost, ProvideCollatorAssignmentCost},
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    parachains_scheduler::common::Assignment,
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    parity_scale_codec::{Decode, Encode, MaxEncodedLen},
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    primitives::{
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        slashing, vstaging::CandidateEvent, vstaging::CommittedCandidateReceiptV2,
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        vstaging::CoreState, vstaging::ScrapedOnChainVotes, ApprovalVotingParams, BlockNumber,
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        CandidateHash, CoreIndex, DisputeState, ExecutorParams, GroupRotationInfo, Hash,
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        Id as ParaId, InboundDownwardMessage, InboundHrmpMessage, Moment, NodeFeatures, Nonce,
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        OccupiedCoreAssumption, PersistedValidationData, SessionInfo, Signature,
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        ValidationCodeHash, ValidatorId, ValidatorIndex, PARACHAIN_KEY_TYPE_ID,
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    },
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    runtime_common::{
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        self as polkadot_runtime_common, impl_runtime_weights, impls::ToAuthor, paras_registrar,
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        paras_sudo_wrapper, traits::Registrar as RegistrarInterface, BlockHashCount, BlockLength,
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        SlowAdjustingFeeUpdate,
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    },
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    runtime_parachains::{
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        configuration as parachains_configuration,
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        disputes::{self as parachains_disputes, slashing as parachains_slashing},
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        dmp as parachains_dmp, hrmp as parachains_hrmp,
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        inclusion::{self as parachains_inclusion, UmpQueueId},
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        initializer as parachains_initializer, on_demand as parachains_assigner_on_demand,
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        origin as parachains_origin, paras as parachains_paras,
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        paras_inherent as parachains_paras_inherent,
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        runtime_api_impl::v11 as parachains_runtime_api_impl,
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        scheduler as parachains_scheduler, session_info as parachains_session_info,
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        shared as parachains_shared,
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    },
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    scale_info::TypeInfo,
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    snowbridge_core::{
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        outbound::{Command, Fee},
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        ChannelId, PricingParameters,
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    },
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    snowbridge_pallet_outbound_queue::MerkleProof,
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    sp_core::{storage::well_known_keys as StorageWellKnownKeys, Get},
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    sp_genesis_builder::PresetId,
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    sp_runtime::{
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        traits::{BlockNumberProvider, ConvertInto},
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        AccountId32,
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    },
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    sp_std::{
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        cmp::Ordering,
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        collections::{btree_map::BTreeMap, btree_set::BTreeSet, vec_deque::VecDeque},
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        marker::PhantomData,
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        prelude::*,
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    },
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    tp_bridge::ConvertLocation,
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    tp_traits::{
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        prod_or_fast_parameter_types, EraIndex, GetHostConfiguration, GetSessionContainerChains,
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        ParaIdAssignmentHooks, RegistrarHandler, Slot, SlotFrequency,
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    },
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    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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};
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#[cfg(any(feature = "std", test))]
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use sp_version::NativeVersion;
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use {
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    frame_support::{
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        construct_runtime, derive_impl,
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        genesis_builder_helper::{build_state, get_preset},
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        parameter_types,
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        traits::{
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            fungible::{Balanced, Credit, HoldConsideration},
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            EitherOf, EitherOfDiverse, EnsureOriginWithArg, InstanceFilter, KeyOwnerProofSystem,
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            LinearStoragePrice, PrivilegeCmp, ProcessMessage, ProcessMessageError,
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        },
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        weights::{ConstantMultiplier, WeightMeter, WeightToFee as _},
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        PalletId,
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    },
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    frame_system::EnsureRoot,
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    pallet_grandpa::{fg_primitives, AuthorityId as GrandpaId},
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    pallet_identity::legacy::IdentityInfo,
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    pallet_session::historical as session_historical,
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    pallet_transaction_payment::{FeeDetails, FungibleAdapter, RuntimeDispatchInfo},
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    sp_core::{OpaqueMetadata, H256},
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    sp_runtime::{
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        generic, impl_opaque_keys,
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        traits::{
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            AccountIdConversion, BlakeTwo256, Block as BlockT, ConstU32, Convert, Hash as HashT,
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            IdentityLookup, Keccak256, OpaqueKeys, SaturatedConversion, Verify, Zero,
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        },
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        transaction_validity::{TransactionPriority, TransactionSource, TransactionValidity},
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        ApplyExtrinsicResult, Cow, FixedU128, KeyTypeId, Perbill, Percent, Permill, RuntimeDebug,
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    },
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    sp_staking::SessionIndex,
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    sp_version::RuntimeVersion,
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    xcm::{
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        latest::prelude::*, IntoVersion, VersionedAssetId, VersionedAssets, VersionedLocation,
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        VersionedXcm,
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    },
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};
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pub use {
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    frame_system::Call as SystemCall,
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    pallet_balances::Call as BalancesCall,
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    primitives::{AccountId, Balance},
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};
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#[cfg(feature = "runtime-benchmarks")]
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use snowbridge_core::{AgentId, TokenId};
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/// Constant values used within the runtime.
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use starlight_runtime_constants::{currency::*, fee::*, snowbridge::EthereumLocation, time::*};
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// XCM configurations.
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pub mod xcm_config;
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pub mod bridge_to_ethereum_config;
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pub mod eth_chain_config;
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// Weights
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mod weights;
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// Governance and configurations.
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pub mod governance;
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use {
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    governance::{
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        pallet_custom_origins, AuctionAdmin, Fellows, GeneralAdmin, Treasurer, TreasurySpender,
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    },
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    pallet_collator_assignment::CoreAllocationConfiguration,
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};
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#[cfg(test)]
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mod tests;
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pub mod genesis_config_presets;
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impl_runtime_weights!(starlight_runtime_constants);
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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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/// Runtime version (Starlight).
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#[sp_version::runtime_version]
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pub const VERSION: RuntimeVersion = RuntimeVersion {
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    spec_name: Cow::Borrowed("starlight"),
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    impl_name: Cow::Borrowed("tanssi-starlight-v2.0"),
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    authoring_version: 0,
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    spec_version: 1400,
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    impl_version: 0,
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    apis: RUNTIME_API_VERSIONS,
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    transaction_version: 26,
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    system_version: 1,
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};
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/// The BABE epoch configuration at genesis.
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pub const BABE_GENESIS_EPOCH_CONFIG: babe_primitives::BabeEpochConfiguration =
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    babe_primitives::BabeEpochConfiguration {
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        c: PRIMARY_PROBABILITY,
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        allowed_slots: babe_primitives::AllowedSlots::PrimaryAndSecondaryVRFSlots,
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    };
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/// Native version.
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#[cfg(any(feature = "std", test))]
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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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/// Aggregate message origin for the `MessageQueue` pallet.
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///
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/// Can be extended to serve further use-cases besides just UMP. Is stored in storage, so any change
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/// to existing values will require a migration.
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#[derive(Encode, Decode, Clone, MaxEncodedLen, Eq, PartialEq, RuntimeDebug, TypeInfo)]
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pub enum AggregateMessageOrigin {
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    /// Inbound upward message.
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    #[codec(index = 0)]
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    Ump(UmpQueueId),
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    /// The message came from a snowbridge channel. It will be processed by `snowbridge_pallet_outbound_queue`.
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    #[codec(index = 1)]
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    Snowbridge(ChannelId),
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    /// The message came from a snowbridge channel, and it's a custom message that only exists in Tanssi.
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    /// This will be processed by `CustomProcessSnowbridgeMessage`.
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    #[codec(index = 2)]
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    SnowbridgeTanssi(ChannelId),
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}
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#[cfg(feature = "runtime-benchmarks")]
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impl From<u32> for AggregateMessageOrigin {
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    fn from(n: u32) -> Self {
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        // Some dummy for the benchmarks.
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        Self::Ump(UmpQueueId::Para(n.into()))
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    }
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}
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pub struct GetAggregateMessageOrigin;
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impl Convert<ChannelId, AggregateMessageOrigin> for GetAggregateMessageOrigin {
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    fn convert(channel_id: ChannelId) -> AggregateMessageOrigin {
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        AggregateMessageOrigin::Snowbridge(channel_id)
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    }
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}
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impl Convert<UmpQueueId, AggregateMessageOrigin> for GetAggregateMessageOrigin {
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    fn convert(queue_id: UmpQueueId) -> AggregateMessageOrigin {
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        AggregateMessageOrigin::Ump(queue_id)
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    }
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}
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pub struct GetAggregateMessageOriginTanssi;
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impl Convert<ChannelId, AggregateMessageOrigin> for GetAggregateMessageOriginTanssi {
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    fn convert(channel_id: ChannelId) -> AggregateMessageOrigin {
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        AggregateMessageOrigin::SnowbridgeTanssi(channel_id)
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    }
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}
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/// This is used by [parachains_inclusion::Pallet::on_queue_changed]
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pub struct GetParaFromAggregateMessageOrigin;
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impl Convert<AggregateMessageOrigin, ParaId> for GetParaFromAggregateMessageOrigin {
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    fn convert(x: AggregateMessageOrigin) -> ParaId {
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        match x {
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            AggregateMessageOrigin::Ump(UmpQueueId::Para(para_id)) => para_id,
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            AggregateMessageOrigin::Snowbridge(channel_id)
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            | AggregateMessageOrigin::SnowbridgeTanssi(channel_id) => {
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                // Read para id from EthereumSystem::channels storage map
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                match EthereumSystem::channels(channel_id) {
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                    Some(x) => x.para_id,
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                    None => {
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                        // This should be unreachable, but return para id 0 if channel does not exist
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                        log::warn!(
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                            "Got snowbridge message from channel that does not exist: {:?}",
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                            channel_id
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                        );
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                        ParaId::from(0)
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                    }
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                }
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            }
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        }
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    }
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}
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pub struct IsContainerChainManagementExtrinsics;
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impl Contains<RuntimeCall> for IsContainerChainManagementExtrinsics {
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    fn contains(c: &RuntimeCall) -> bool {
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        matches!(
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            c,
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            RuntimeCall::ServicesPayment(_)
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                | RuntimeCall::StreamPayment(_)
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                | RuntimeCall::DataPreservers(_)
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        )
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    }
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}
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pub struct IsDemocracyExtrinsics;
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impl Contains<RuntimeCall> for IsDemocracyExtrinsics {
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    fn contains(c: &RuntimeCall) -> bool {
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        matches!(
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            c,
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            RuntimeCall::Treasury(_)
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                | RuntimeCall::ConvictionVoting(_)
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                | RuntimeCall::Referenda(_)
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                | RuntimeCall::FellowshipCollective(_)
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                | RuntimeCall::FellowshipReferenda(_)
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                | RuntimeCall::Whitelist(_)
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                | RuntimeCall::Preimage(_)
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        )
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    }
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}
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pub struct IsXcmExtrinsics;
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impl Contains<RuntimeCall> for IsXcmExtrinsics {
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    fn contains(c: &RuntimeCall) -> bool {
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        matches!(
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            c,
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            RuntimeCall::Hrmp(_)
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                | RuntimeCall::MessageQueue(_)
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                | RuntimeCall::AssetRate(_)
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                | RuntimeCall::XcmPallet(_)
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        )
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    }
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}
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pub struct IsContainerChainRegistrationExtrinsics;
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impl Contains<RuntimeCall> for IsContainerChainRegistrationExtrinsics {
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    fn contains(c: &RuntimeCall) -> bool {
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        matches!(
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            c,
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            RuntimeCall::ContainerRegistrar(_)
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                | RuntimeCall::OnDemandAssignmentProvider(_)
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                | RuntimeCall::Registrar(_)
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        )
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    }
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}
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pub struct IsStakingExtrinsics;
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impl Contains<RuntimeCall> for IsStakingExtrinsics {
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    fn contains(c: &RuntimeCall) -> bool {
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        matches!(c, RuntimeCall::PooledStaking(_))
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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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    pub const SS58Prefix: u8 = 42;
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}
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#[derive_impl(frame_system::config_preludes::RelayChainDefaultConfig)]
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impl frame_system::Config for Runtime {
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    type BaseCallFilter = EverythingBut<(
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        IsContainerChainManagementExtrinsics,
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        IsDemocracyExtrinsics,
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        IsXcmExtrinsics,
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        IsContainerChainRegistrationExtrinsics,
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        IsStakingExtrinsics,
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    )>;
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    type BlockWeights = BlockWeights;
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    type BlockLength = BlockLength;
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    type DbWeight = RocksDbWeight;
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    type Nonce = Nonce;
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    type Hash = Hash;
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    type AccountId = AccountId;
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    type Block = Block;
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    type BlockHashCount = BlockHashCount;
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    type Version = Version;
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    type AccountData = pallet_balances::AccountData<Balance>;
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    type SystemWeightInfo = weights::frame_system::SubstrateWeight<Runtime>;
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    type SS58Prefix = SS58Prefix;
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    type MaxConsumers = frame_support::traits::ConstU32<16>;
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    type MultiBlockMigrator = MultiBlockMigrations;
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    type ExtensionsWeightInfo = weights::frame_system_extensions::SubstrateWeight<Runtime>;
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}
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parameter_types! {
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    pub MaximumSchedulerWeight: Weight = Perbill::from_percent(80) *
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        BlockWeights::get().max_block;
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    pub const MaxScheduledPerBlock: u32 = 50;
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    pub const NoPreimagePostponement: Option<u32> = Some(10);
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}
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/// Used the compare the privilege of an origin inside the scheduler.
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pub struct OriginPrivilegeCmp;
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impl PrivilegeCmp<OriginCaller> for OriginPrivilegeCmp {
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    fn cmp_privilege(left: &OriginCaller, right: &OriginCaller) -> Option<Ordering> {
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        if left == right {
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            return Some(Ordering::Equal);
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        }
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        match (left, right) {
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            // Root is greater than anything.
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            (OriginCaller::system(frame_system::RawOrigin::Root), _) => Some(Ordering::Greater),
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            // For every other origin we don't care, as they are not used for `ScheduleOrigin`.
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            _ => None,
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        }
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    }
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}
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/// Dynamic params that can be adjusted at runtime.
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#[dynamic_params(RuntimeParameters, pallet_parameters::Parameters::<Runtime>)]
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pub mod dynamic_params {
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    use super::*;
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    #[dynamic_pallet_params]
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    #[codec(index = 0)]
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    pub mod preimage {
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        use super::*;
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        #[codec(index = 0)]
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        pub static BaseDeposit: Balance = deposit(2, 64);
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        #[codec(index = 1)]
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        pub static ByteDeposit: Balance = deposit(0, 1);
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    }
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}
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#[cfg(feature = "runtime-benchmarks")]
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impl Default for RuntimeParameters {
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    fn default() -> Self {
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        RuntimeParameters::Preimage(dynamic_params::preimage::Parameters::BaseDeposit(
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            dynamic_params::preimage::BaseDeposit,
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            Some(1u32.into()),
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        ))
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    }
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}
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/// Defines what origin can modify which dynamic parameters.
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pub struct DynamicParameterOrigin;
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impl EnsureOriginWithArg<RuntimeOrigin, RuntimeParametersKey> for DynamicParameterOrigin {
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    type Success = ();
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    fn try_origin(
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        origin: RuntimeOrigin,
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        key: &RuntimeParametersKey,
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    ) -> Result<Self::Success, RuntimeOrigin> {
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        use crate::RuntimeParametersKey::*;
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        match key {
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            Preimage(_) => frame_system::ensure_root(origin.clone()),
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        }
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        .map_err(|_| origin)
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    }
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    #[cfg(feature = "runtime-benchmarks")]
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    fn try_successful_origin(_key: &RuntimeParametersKey) -> Result<RuntimeOrigin, ()> {
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        // Provide the origin for the parameter returned by `Default`:
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        Ok(RuntimeOrigin::root())
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    }
459
}
460

            
461
impl pallet_scheduler::Config for Runtime {
462
    type RuntimeOrigin = RuntimeOrigin;
463
    type RuntimeEvent = RuntimeEvent;
464
    type PalletsOrigin = OriginCaller;
465
    type RuntimeCall = RuntimeCall;
466
    type MaximumWeight = MaximumSchedulerWeight;
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    // The goal of having ScheduleOrigin include AuctionAdmin is to allow the auctions track of
468
    // OpenGov to schedule periodic auctions.
469
    type ScheduleOrigin = EitherOf<EnsureRoot<AccountId>, AuctionAdmin>;
470
    type MaxScheduledPerBlock = MaxScheduledPerBlock;
471
    type WeightInfo = weights::pallet_scheduler::SubstrateWeight<Runtime>;
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    type OriginPrivilegeCmp = OriginPrivilegeCmp;
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    type Preimages = Preimage;
474
}
475

            
476
parameter_types! {
477
    pub const PreimageHoldReason: RuntimeHoldReason = RuntimeHoldReason::Preimage(pallet_preimage::HoldReason::Preimage);
478
}
479

            
480
impl pallet_preimage::Config for Runtime {
481
    type WeightInfo = weights::pallet_preimage::SubstrateWeight<Runtime>;
482
    type RuntimeEvent = RuntimeEvent;
483
    type Currency = Balances;
484
    type ManagerOrigin = EnsureRoot<AccountId>;
485
    type Consideration = HoldConsideration<
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        AccountId,
487
        Balances,
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        PreimageHoldReason,
489
        LinearStoragePrice<
490
            dynamic_params::preimage::BaseDeposit,
491
            dynamic_params::preimage::ByteDeposit,
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            Balance,
493
        >,
494
    >;
495
}
496

            
497
parameter_types! {
498
    pub const ExpectedBlockTime: Moment = MILLISECS_PER_BLOCK;
499
    pub ReportLongevity: u64 = u64::from(EpochDurationInBlocks::get()) * 10;
500
}
501

            
502
impl pallet_babe::Config for Runtime {
503
    type EpochDuration = EpochDurationInBlocks;
504
    type ExpectedBlockTime = ExpectedBlockTime;
505
    // session module is the trigger
506
    type EpochChangeTrigger = pallet_babe::ExternalTrigger;
507
    type DisabledValidators = Session;
508
    // Not benchmarked in Kusama
509
    type WeightInfo = ();
510
    type MaxAuthorities = MaxAuthorities;
511
    type MaxNominators = ConstU32<0>;
512
    type KeyOwnerProof = sp_session::MembershipProof;
513
    type EquivocationReportSystem =
514
        pallet_babe::EquivocationReportSystem<Self, Offences, Historical, ReportLongevity>;
515
}
516

            
517
parameter_types! {
518
    pub const ExistentialDeposit: Balance = EXISTENTIAL_DEPOSIT;
519
    pub const MaxLocks: u32 = 50;
520
    pub const MaxReserves: u32 = 50;
521
}
522

            
523
impl pallet_balances::Config for Runtime {
524
    type Balance = Balance;
525
    type DustRemoval = ();
526
    type RuntimeEvent = RuntimeEvent;
527
    type ExistentialDeposit = ExistentialDeposit;
528
    type AccountStore = System;
529
    type MaxLocks = MaxLocks;
530
    type MaxReserves = MaxReserves;
531
    type ReserveIdentifier = [u8; 8];
532
    type WeightInfo = weights::pallet_balances::SubstrateWeight<Runtime>;
533
    type FreezeIdentifier = ();
534
    type RuntimeHoldReason = RuntimeHoldReason;
535
    type RuntimeFreezeReason = RuntimeFreezeReason;
536
    type MaxFreezes = ConstU32<1>;
537
    type DoneSlashHandler = ();
538
}
539

            
540
parameter_types! {
541
    pub const TransactionByteFee: Balance = 10 * MILLICENTS;
542
    /// This value increases the priority of `Operational` transactions by adding
543
    /// a "virtual tip" that's equal to the `OperationalFeeMultiplier * final_fee`.
544
    pub const OperationalFeeMultiplier: u8 = 5;
545
}
546

            
547
impl pallet_transaction_payment::Config for Runtime {
548
    type RuntimeEvent = RuntimeEvent;
549
    type OnChargeTransaction = FungibleAdapter<Balances, ToAuthor<Runtime>>;
550
    type OperationalFeeMultiplier = OperationalFeeMultiplier;
551
    type WeightToFee = WeightToFee;
552
    type LengthToFee = ConstantMultiplier<Balance, TransactionByteFee>;
553
    type FeeMultiplierUpdate = SlowAdjustingFeeUpdate<Self>;
554
    type WeightInfo = weights::pallet_transaction_payment::SubstrateWeight<Runtime>;
555
}
556

            
557
parameter_types! {
558
    pub const MinimumPeriod: u64 = SLOT_DURATION / 2;
559
}
560
impl pallet_timestamp::Config for Runtime {
561
    type Moment = u64;
562
    type OnTimestampSet = Babe;
563
    type MinimumPeriod = MinimumPeriod;
564
    type WeightInfo = weights::pallet_timestamp::SubstrateWeight<Runtime>;
565
}
566

            
567
pub struct RewardPoints;
568

            
569
impl pallet_authorship::EventHandler<AccountId, BlockNumberFor<Runtime>> for RewardPoints {
570
3605
    fn note_author(author: AccountId) {
571
3605
        let whitelisted_validators =
572
3605
            pallet_external_validators::WhitelistedValidatorsActiveEra::<Runtime>::get();
573
3605
        // Do not reward whitelisted validators
574
3605
        if !whitelisted_validators.contains(&author) {
575
220
            ExternalValidatorsRewards::reward_by_ids(vec![(author, 20u32)])
576
3385
        }
577
3605
    }
578
}
579

            
580
impl pallet_authorship::Config for Runtime {
581
    type FindAuthor = pallet_session::FindAccountFromAuthorIndex<Self, Babe>;
582
    type EventHandler = RewardPoints;
583
}
584

            
585
impl_opaque_keys! {
586
    pub struct SessionKeys {
587
        pub grandpa: Grandpa,
588
        pub babe: Babe,
589
        pub para_validator: Initializer,
590
        pub para_assignment: ParaSessionInfo,
591
        pub authority_discovery: AuthorityDiscovery,
592
        pub beefy: Beefy,
593
        pub nimbus: TanssiInitializer,
594
    }
595
}
596

            
597
/// Special `ValidatorIdOf` implementation that is just returning the input as result.
598
pub struct ValidatorIdOf;
599
impl sp_runtime::traits::Convert<AccountId, Option<AccountId>> for ValidatorIdOf {
600
146
    fn convert(a: AccountId) -> Option<AccountId> {
601
146
        Some(a)
602
146
    }
603
}
604

            
605
impl pallet_session::Config for Runtime {
606
    type RuntimeEvent = RuntimeEvent;
607
    type ValidatorId = AccountId;
608
    type ValidatorIdOf = ValidatorIdOf;
609
    type ShouldEndSession = Babe;
610
    type NextSessionRotation = Babe;
611
    type SessionManager = pallet_session::historical::NoteHistoricalRoot<Self, ExternalValidators>;
612
    type SessionHandler = <SessionKeys as OpaqueKeys>::KeyTypeIdProviders;
613
    type Keys = SessionKeys;
614
    type WeightInfo = weights::pallet_session::SubstrateWeight<Runtime>;
615
}
616

            
617
pub struct FullIdentificationOf;
618
impl Convert<AccountId, Option<()>> for FullIdentificationOf {
619
755
    fn convert(_: AccountId) -> Option<()> {
620
755
        Some(())
621
755
    }
622
}
623

            
624
impl pallet_session::historical::Config for Runtime {
625
    type FullIdentification = ();
626
    type FullIdentificationOf = FullIdentificationOf;
627
}
628

            
629
parameter_types! {
630
    pub const BondingDuration: sp_staking::EraIndex = runtime_common::prod_or_fast!(28, 3);
631
}
632

            
633
parameter_types! {
634
    pub const ProposalBond: Permill = Permill::from_percent(5);
635
    pub const ProposalBondMinimum: Balance = 2000 * CENTS;
636
    pub const ProposalBondMaximum: Balance = 1 * GRAND;
637
    // We allow it to be 1 minute in fast mode to be able to test it
638
    pub const SpendPeriod: BlockNumber = runtime_common::prod_or_fast!(6 * DAYS, 1 * MINUTES);
639
    pub const Burn: Permill = Permill::from_perthousand(2);
640
    pub const TreasuryPalletId: PalletId = PalletId(*b"py/trsry");
641
    pub const PayoutSpendPeriod: BlockNumber = 30 * DAYS;
642
    // The asset's interior location for the paying account. This is the Treasury
643
    // pallet instance (which sits at index 18).
644
    pub TreasuryInteriorLocation: InteriorLocation = PalletInstance(18).into();
645

            
646
    pub const TipCountdown: BlockNumber = 1 * DAYS;
647
    pub const TipFindersFee: Percent = Percent::from_percent(20);
648
    pub const TipReportDepositBase: Balance = 100 * CENTS;
649
    pub const DataDepositPerByte: Balance = 1 * CENTS;
650
    pub const MaxApprovals: u32 = 100;
651
    pub const MaxAuthorities: u32 = 100_000;
652
    pub const MaxKeys: u32 = 10_000;
653
    pub const MaxPeerInHeartbeats: u32 = 10_000;
654
    pub const MaxBalance: Balance = Balance::max_value();
655
    pub TreasuryAccount: AccountId = Treasury::account_id();
656
    pub SnowbridgeFeesAccount: AccountId = PalletId(*b"sb/feeac").into_account_truncating();
657
}
658

            
659
#[cfg(feature = "runtime-benchmarks")]
660
pub struct TreasuryBenchmarkHelper<T>(PhantomData<T>);
661

            
662
#[cfg(feature = "runtime-benchmarks")]
663
use frame_support::traits::Currency;
664
#[cfg(feature = "runtime-benchmarks")]
665
use pallet_treasury::ArgumentsFactory;
666
use {
667
    frame_support::traits::{
668
        ExistenceRequirement, OnUnbalanced, ValidatorRegistration, WithdrawReasons,
669
    },
670
    pallet_services_payment::BalanceOf,
671
    runtime_parachains::configuration::HostConfiguration,
672
    sp_runtime::{DispatchError, TransactionOutcome},
673
};
674

            
675
#[cfg(feature = "runtime-benchmarks")]
676
impl<T> ArgumentsFactory<(), T::AccountId> for TreasuryBenchmarkHelper<T>
677
where
678
    T: pallet_treasury::Config,
679
    T::AccountId: From<[u8; 32]>,
680
{
681
    fn create_asset_kind(_seed: u32) {}
682

            
683
    fn create_beneficiary(seed: [u8; 32]) -> T::AccountId {
684
        let account: T::AccountId = seed.into();
685
        let balance = T::Currency::minimum_balance();
686
        let _ = T::Currency::make_free_balance_be(&account, balance);
687
        account
688
    }
689
}
690

            
691
impl pallet_treasury::Config for Runtime {
692
    type PalletId = TreasuryPalletId;
693
    type Currency = Balances;
694
    type RejectOrigin = EitherOfDiverse<EnsureRoot<AccountId>, Treasurer>;
695
    type RuntimeEvent = RuntimeEvent;
696
    type SpendPeriod = SpendPeriod;
697
    type Burn = Burn;
698
    type BurnDestination = ();
699
    type MaxApprovals = MaxApprovals;
700
    type WeightInfo = weights::pallet_treasury::SubstrateWeight<Runtime>;
701
    type SpendFunds = ();
702
    type SpendOrigin = TreasurySpender;
703
    type AssetKind = ();
704
    type Beneficiary = AccountId;
705
    type BeneficiaryLookup = IdentityLookup<Self::Beneficiary>;
706
    type Paymaster = PayFromAccount<Balances, TreasuryAccount>;
707
    type BalanceConverter = UnityAssetBalanceConversion;
708
    type PayoutPeriod = PayoutSpendPeriod;
709
    type BlockNumberProvider = System;
710
    #[cfg(feature = "runtime-benchmarks")]
711
    type BenchmarkHelper = TreasuryBenchmarkHelper<Runtime>;
712
}
713

            
714
impl pallet_offences::Config for Runtime {
715
    type RuntimeEvent = RuntimeEvent;
716
    type IdentificationTuple = pallet_session::historical::IdentificationTuple<Self>;
717
    type OnOffenceHandler = ExternalValidatorSlashes;
718
}
719

            
720
impl pallet_authority_discovery::Config for Runtime {
721
    type MaxAuthorities = MaxAuthorities;
722
}
723

            
724
parameter_types! {
725
    pub const MaxSetIdSessionEntries: u32 = BondingDuration::get() * SessionsPerEra::get();
726
}
727

            
728
impl pallet_grandpa::Config for Runtime {
729
    type RuntimeEvent = RuntimeEvent;
730
    // Not benchmarked in Kusama, benchmarking code also don't match WeightInfo trait.
731
    type WeightInfo = ();
732
    type MaxAuthorities = MaxAuthorities;
733
    type MaxNominators = ConstU32<0>;
734
    type MaxSetIdSessionEntries = MaxSetIdSessionEntries;
735
    type KeyOwnerProof = sp_session::MembershipProof;
736
    type EquivocationReportSystem =
737
        pallet_grandpa::EquivocationReportSystem<Self, Offences, Historical, ReportLongevity>;
738
}
739

            
740
/// Submits a transaction with the node's public and signature type. Adheres to the signed extension
741
/// format of the chain.
742
impl<LocalCall> frame_system::offchain::CreateSignedTransaction<LocalCall> for Runtime
743
where
744
    RuntimeCall: From<LocalCall>,
745
{
746
    fn create_signed_transaction<
747
        C: frame_system::offchain::AppCrypto<Self::Public, Self::Signature>,
748
    >(
749
        call: RuntimeCall,
750
        public: <Signature as Verify>::Signer,
751
        account: AccountId,
752
        nonce: <Runtime as frame_system::Config>::Nonce,
753
    ) -> Option<UncheckedExtrinsic> {
754
        use sp_runtime::traits::StaticLookup;
755
        // take the biggest period possible.
756
        let period = BlockHashCount::get()
757
            .checked_next_power_of_two()
758
            .map(|c| c / 2)
759
            .unwrap_or(2) as u64;
760

            
761
        let current_block = System::block_number()
762
            .saturated_into::<u64>()
763
            // The `System::block_number` is initialized with `n+1`,
764
            // so the actual block number is `n`.
765
            .saturating_sub(1);
766
        let tip = 0;
767
        let tx_ext: TxExtension = (
768
            frame_system::CheckNonZeroSender::<Runtime>::new(),
769
            frame_system::CheckSpecVersion::<Runtime>::new(),
770
            frame_system::CheckTxVersion::<Runtime>::new(),
771
            frame_system::CheckGenesis::<Runtime>::new(),
772
            frame_system::CheckMortality::<Runtime>::from(generic::Era::mortal(
773
                period,
774
                current_block,
775
            )),
776
            frame_system::CheckNonce::<Runtime>::from(nonce),
777
            frame_system::CheckWeight::<Runtime>::new(),
778
            pallet_transaction_payment::ChargeTransactionPayment::<Runtime>::from(tip),
779
            //cumulus_primitives_storage_weight_reclaim::StorageWeightReclaim::<Runtime>::new(),
780
            frame_metadata_hash_extension::CheckMetadataHash::new(true),
781
        );
782
        let raw_payload = SignedPayload::new(call, tx_ext)
783
            .map_err(|e| {
784
                log::warn!("Unable to create signed payload: {:?}", e);
785
            })
786
            .ok()?;
787
        let signature = raw_payload.using_encoded(|payload| C::sign(payload, public))?;
788
        let (call, tx_ext, _) = raw_payload.deconstruct();
789
        let address = <Runtime as frame_system::Config>::Lookup::unlookup(account);
790
        let transaction = UncheckedExtrinsic::new_signed(call, address, signature, tx_ext);
791
        Some(transaction)
792
    }
793
}
794

            
795
impl frame_system::offchain::SigningTypes for Runtime {
796
    type Public = <Signature as Verify>::Signer;
797
    type Signature = Signature;
798
}
799

            
800
impl<C> frame_system::offchain::CreateTransactionBase<C> for Runtime
801
where
802
    RuntimeCall: From<C>,
803
{
804
    type Extrinsic = UncheckedExtrinsic;
805
    type RuntimeCall = RuntimeCall;
806
}
807

            
808
impl<LocalCall> frame_system::offchain::CreateInherent<LocalCall> for Runtime
809
where
810
    RuntimeCall: From<LocalCall>,
811
{
812
    fn create_inherent(call: RuntimeCall) -> UncheckedExtrinsic {
813
        UncheckedExtrinsic::new_bare(call)
814
    }
815
}
816

            
817
parameter_types! {
818
    // Minimum 100 bytes/STAR deposited (1 CENT/byte)
819
    pub const BasicDeposit: Balance = 1000 * CENTS;       // 258 bytes on-chain
820
    pub const ByteDeposit: Balance = deposit(0, 1);
821
    pub const UsernameDeposit: Balance = deposit(0, 32);
822
    pub const SubAccountDeposit: Balance = 200 * CENTS;   // 53 bytes on-chain
823
    pub const MaxSubAccounts: u32 = 100;
824
    pub const MaxAdditionalFields: u32 = 100;
825
    pub const MaxRegistrars: u32 = 20;
826
}
827

            
828
impl pallet_identity::Config for Runtime {
829
    type RuntimeEvent = RuntimeEvent;
830
    type Currency = Balances;
831
    type BasicDeposit = BasicDeposit;
832
    type ByteDeposit = ByteDeposit;
833
    type UsernameDeposit = UsernameDeposit;
834
    type SubAccountDeposit = SubAccountDeposit;
835
    type MaxSubAccounts = MaxSubAccounts;
836
    type IdentityInformation = IdentityInfo<MaxAdditionalFields>;
837
    type MaxRegistrars = MaxRegistrars;
838
    type Slashed = Treasury;
839
    type ForceOrigin = EitherOf<EnsureRoot<Self::AccountId>, GeneralAdmin>;
840
    type RegistrarOrigin = EitherOf<EnsureRoot<Self::AccountId>, GeneralAdmin>;
841
    type OffchainSignature = Signature;
842
    type SigningPublicKey = <Signature as Verify>::Signer;
843
    type UsernameAuthorityOrigin = EnsureRoot<Self::AccountId>;
844
    type PendingUsernameExpiration = ConstU32<{ 7 * DAYS }>;
845
    type UsernameGracePeriod = ConstU32<{ 30 * DAYS }>;
846
    type MaxSuffixLength = ConstU32<7>;
847
    type MaxUsernameLength = ConstU32<32>;
848
    type WeightInfo = weights::pallet_identity::SubstrateWeight<Runtime>;
849
}
850

            
851
impl pallet_utility::Config for Runtime {
852
    type RuntimeEvent = RuntimeEvent;
853
    type RuntimeCall = RuntimeCall;
854
    type PalletsOrigin = OriginCaller;
855
    type WeightInfo = weights::pallet_utility::SubstrateWeight<Runtime>;
856
}
857

            
858
parameter_types! {
859
    // One storage item; key size is 32; value is size 4+4+16+32 bytes = 56 bytes.
860
    pub const DepositBase: Balance = deposit(1, 88);
861
    // Additional storage item size of 32 bytes.
862
    pub const DepositFactor: Balance = deposit(0, 32);
863
    pub const MaxSignatories: u32 = 100;
864
}
865

            
866
impl pallet_multisig::Config for Runtime {
867
    type RuntimeEvent = RuntimeEvent;
868
    type RuntimeCall = RuntimeCall;
869
    type Currency = Balances;
870
    type DepositBase = DepositBase;
871
    type DepositFactor = DepositFactor;
872
    type MaxSignatories = MaxSignatories;
873
    type WeightInfo = weights::pallet_multisig::SubstrateWeight<Runtime>;
874
}
875

            
876
parameter_types! {
877
    // One storage item; key size 32, value size 8; .
878
    pub const ProxyDepositBase: Balance = deposit(1, 8);
879
    // Additional storage item size of 33 bytes.
880
    pub const ProxyDepositFactor: Balance = deposit(0, 33);
881
    pub const MaxProxies: u16 = 32;
882
    pub const AnnouncementDepositBase: Balance = deposit(1, 8);
883
    pub const AnnouncementDepositFactor: Balance = deposit(0, 66);
884
    pub const MaxPending: u16 = 32;
885
}
886

            
887
/// The type used to represent the kinds of proxying allowed.
888
#[derive(
889
    Copy,
890
    Clone,
891
    Eq,
892
    PartialEq,
893
    Ord,
894
    PartialOrd,
895
    Encode,
896
    Decode,
897
    RuntimeDebug,
898
    MaxEncodedLen,
899
    TypeInfo,
900
)]
901
pub enum ProxyType {
902
    Any,
903
    NonTransfer,
904
    Governance,
905
    IdentityJudgement,
906
    CancelProxy,
907
    Auction,
908
    OnDemandOrdering,
909
    SudoRegistrar,
910
    SudoValidatorManagement,
911
    SessionKeyManagement,
912
    Staking,
913
}
914
impl Default for ProxyType {
915
    fn default() -> Self {
916
        Self::Any
917
    }
918
}
919
impl InstanceFilter<RuntimeCall> for ProxyType {
920
    fn filter(&self, c: &RuntimeCall) -> bool {
921
        match self {
922
            ProxyType::Any => true,
923
            ProxyType::NonTransfer => matches!(
924
                c,
925
                RuntimeCall::System(..) |
926
				RuntimeCall::Babe(..) |
927
				RuntimeCall::Timestamp(..) |
928
				// Specifically omitting Indices `transfer`, `force_transfer`
929
				// Specifically omitting the entire Balances pallet
930
				RuntimeCall::Session(..) |
931
				RuntimeCall::Grandpa(..) |
932
				RuntimeCall::Treasury(..) |
933
				RuntimeCall::ConvictionVoting(..) |
934
				RuntimeCall::Referenda(..) |
935
				RuntimeCall::FellowshipCollective(..) |
936
				RuntimeCall::FellowshipReferenda(..) |
937
				RuntimeCall::Whitelist(..) |
938
				RuntimeCall::Utility(..) |
939
				RuntimeCall::Identity(..) |
940
				RuntimeCall::Scheduler(..) |
941
				RuntimeCall::Proxy(..) |
942
				RuntimeCall::Multisig(..) |
943
				RuntimeCall::Registrar(paras_registrar::Call::register {..}) |
944
				RuntimeCall::Registrar(paras_registrar::Call::deregister {..}) |
945
				// Specifically omitting Registrar `swap`
946
				RuntimeCall::Registrar(paras_registrar::Call::reserve {..})
947
            ),
948
            ProxyType::Governance => matches!(
949
                c,
950
                RuntimeCall::Utility(..) |
951
					// OpenGov calls
952
					RuntimeCall::ConvictionVoting(..) |
953
					RuntimeCall::Referenda(..) |
954
					RuntimeCall::FellowshipCollective(..) |
955
					RuntimeCall::FellowshipReferenda(..) |
956
					RuntimeCall::Whitelist(..)
957
            ),
958
            ProxyType::IdentityJudgement => matches!(
959
                c,
960
                RuntimeCall::Identity(pallet_identity::Call::provide_judgement { .. })
961
                    | RuntimeCall::Utility(..)
962
            ),
963
            ProxyType::CancelProxy => {
964
                matches!(
965
                    c,
966
                    RuntimeCall::Proxy(pallet_proxy::Call::reject_announcement { .. })
967
                )
968
            }
969
            ProxyType::Auction => {
970
                matches!(c, RuntimeCall::Registrar { .. } | RuntimeCall::Multisig(..))
971
            }
972
            ProxyType::OnDemandOrdering => matches!(c, RuntimeCall::OnDemandAssignmentProvider(..)),
973
            ProxyType::SudoRegistrar => match c {
974
                RuntimeCall::Sudo(pallet_sudo::Call::sudo { call: ref x }) => {
975
                    matches!(
976
                        x.as_ref(),
977
                        &RuntimeCall::DataPreservers(..)
978
                            | &RuntimeCall::Registrar(..)
979
                            | &RuntimeCall::ContainerRegistrar(..)
980
                            | &RuntimeCall::Paras(..)
981
                            | &RuntimeCall::ParasSudoWrapper(..)
982
                    )
983
                }
984
                _ => false,
985
            },
986
            ProxyType::SudoValidatorManagement => match c {
987
                RuntimeCall::Sudo(pallet_sudo::Call::sudo { call: ref x }) => {
988
                    matches!(
989
                        x.as_ref(),
990
                        &RuntimeCall::ExternalValidators(..)
991
                            | &RuntimeCall::ExternalValidatorSlashes(..)
992
                    )
993
                }
994
                _ => false,
995
            },
996
            ProxyType::SessionKeyManagement => {
997
                matches!(c, RuntimeCall::Session(..))
998
            }
999
            ProxyType::Staking => {
                matches!(c, RuntimeCall::Session(..) | RuntimeCall::PooledStaking(..))
            }
        }
    }
    fn is_superset(&self, o: &Self) -> bool {
        match (self, o) {
            (x, y) if x == y => true,
            (ProxyType::Any, _) => true,
            (_, ProxyType::Any) => false,
            (ProxyType::NonTransfer, _) => true,
            _ => false,
        }
    }
}
impl pallet_proxy::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeCall = RuntimeCall;
    type Currency = Balances;
    type ProxyType = ProxyType;
    type ProxyDepositBase = ProxyDepositBase;
    type ProxyDepositFactor = ProxyDepositFactor;
    type MaxProxies = MaxProxies;
    type WeightInfo = weights::pallet_proxy::SubstrateWeight<Runtime>;
    type MaxPending = MaxPending;
    type CallHasher = BlakeTwo256;
    type AnnouncementDepositBase = AnnouncementDepositBase;
    type AnnouncementDepositFactor = AnnouncementDepositFactor;
}
impl parachains_origin::Config for Runtime {}
impl parachains_configuration::Config for Runtime {
    type WeightInfo = weights::runtime_parachains_configuration::SubstrateWeight<Runtime>;
}
impl parachains_shared::Config for Runtime {
    type DisabledValidators = Session;
}
impl parachains_session_info::Config for Runtime {
    type ValidatorSet = Historical;
}
pub type RewardValidators =
    pallet_external_validators_rewards::RewardValidatorsWithEraPoints<Runtime>;
impl parachains_inclusion::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type DisputesHandler = ParasDisputes;
    type RewardValidators = RewardValidators;
    type AggregateMessageOrigin = AggregateMessageOrigin;
    type GetAggregateMessageOrigin = GetAggregateMessageOrigin;
    type GetParaFromAggregateMessageOrigin = GetParaFromAggregateMessageOrigin;
    type MessageQueue = MessageQueue;
    type WeightInfo = weights::runtime_parachains_inclusion::SubstrateWeight<Runtime>;
}
parameter_types! {
    pub const ParasUnsignedPriority: TransactionPriority = TransactionPriority::max_value();
}
impl parachains_paras::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type WeightInfo = weights::runtime_parachains_paras::SubstrateWeight<Runtime>;
    type UnsignedPriority = ParasUnsignedPriority;
    type QueueFootprinter = ParaInclusion;
    type NextSessionRotation = Babe;
    type OnNewHead = Registrar;
    type AssignCoretime = ();
}
parameter_types! {
    /// Amount of weight that can be spent per block to service messages.
    ///
    /// # WARNING
    ///
    /// This is not a good value for para-chains since the `Scheduler` already uses up to 80% block weight.
    pub MessageQueueServiceWeight: Weight = Perbill::from_percent(20) * BlockWeights::get().max_block;
    pub const MessageQueueHeapSize: u32 = 32 * 1024;
    pub const MessageQueueMaxStale: u32 = 96;
}
/// Message processor to handle any messages that were enqueued into the `MessageQueue` pallet.
pub struct MessageProcessor;
impl ProcessMessage for MessageProcessor {
    type Origin = AggregateMessageOrigin;
64
    fn process_message(
64
        message: &[u8],
64
        origin: Self::Origin,
64
        meter: &mut WeightMeter,
64
        id: &mut [u8; 32],
64
    ) -> Result<bool, ProcessMessageError> {
64
        match origin {
            AggregateMessageOrigin::Ump(UmpQueueId::Para(para)) => {
                xcm_builder::ProcessXcmMessage::<
                    Junction,
                    xcm_executor::XcmExecutor<xcm_config::XcmConfig>,
                    RuntimeCall,
                >::process_message(
                    message, Junction::Parachain(para.into()), meter, id
                )
            }
            AggregateMessageOrigin::Snowbridge(_) => {
11
                snowbridge_pallet_outbound_queue::Pallet::<Runtime>::process_message(
11
                    message, origin, meter, id,
11
                )
            }
            AggregateMessageOrigin::SnowbridgeTanssi(_) => {
53
                tp_bridge::CustomProcessSnowbridgeMessage::<Runtime>::process_message(
53
                    message, origin, meter, id,
53
                )
            }
        }
64
    }
}
impl pallet_message_queue::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type Size = u32;
    type HeapSize = MessageQueueHeapSize;
    type MaxStale = MessageQueueMaxStale;
    type ServiceWeight = MessageQueueServiceWeight;
    type IdleMaxServiceWeight = MessageQueueServiceWeight;
    #[cfg(not(feature = "runtime-benchmarks"))]
    type MessageProcessor = MessageProcessor;
    #[cfg(feature = "runtime-benchmarks")]
    type MessageProcessor =
        pallet_message_queue::mock_helpers::NoopMessageProcessor<AggregateMessageOrigin>;
    type QueueChangeHandler = ParaInclusion;
    type QueuePausedQuery = ();
    type WeightInfo = weights::pallet_message_queue::SubstrateWeight<Runtime>;
}
impl parachains_dmp::Config for Runtime {}
parameter_types! {
    pub const HrmpChannelSizeAndCapacityWithSystemRatio: Percent = Percent::from_percent(100);
}
impl parachains_hrmp::Config for Runtime {
    type RuntimeOrigin = RuntimeOrigin;
    type RuntimeEvent = RuntimeEvent;
    type ChannelManager = EnsureRoot<AccountId>;
    type Currency = Balances;
    type DefaultChannelSizeAndCapacityWithSystem =
        parachains_configuration::ActiveConfigHrmpChannelSizeAndCapacityRatio<
            Runtime,
            HrmpChannelSizeAndCapacityWithSystemRatio,
        >;
    type WeightInfo = weights::runtime_parachains_hrmp::SubstrateWeight<Runtime>;
    type VersionWrapper = XcmPallet;
}
impl parachains_paras_inherent::Config for Runtime {
    type WeightInfo = weights::runtime_parachains_paras_inherent::SubstrateWeight<Runtime>;
}
impl parachains_scheduler::Config for Runtime {
    // If you change this, make sure the `Assignment` type of the new provider is binary compatible,
    // otherwise provide a migration.
    type AssignmentProvider = CollatorAssignmentProvider;
}
pub struct CollatorAssignmentProvider;
impl parachains_scheduler::common::AssignmentProvider<BlockNumberFor<Runtime>>
    for CollatorAssignmentProvider
{
2616
    fn pop_assignment_for_core(core_idx: CoreIndex) -> Option<Assignment> {
2616
        let assigned_collators = TanssiCollatorAssignment::collator_container_chain();
2616
        let assigned_paras: Vec<ParaId> = assigned_collators
2616
            .container_chains
2616
            .iter()
2616
            .filter_map(|(&para_id, collators)| {
1194
                if Paras::is_parachain(para_id) && collators.len() > 0 {
590
                    Some(para_id)
                } else {
604
                    None
                }
2616
            })
2616
            .collect();
2616
        log::debug!("pop assigned collators {:?}", assigned_paras);
2616
        log::debug!("looking for core idx {:?}", core_idx);
2616
        if let Some(para_id) = assigned_paras.get(core_idx.0 as usize) {
68
            log::debug!("outputing assignment for  {:?}", para_id);
68
            Some(Assignment::Bulk(*para_id))
        } else {
            // We dont want to assign affinity to a parathread that has not collators assigned
            // Even if we did they would need their own collators to produce blocks, but for now
            // I prefer to forbid.
            // In this case the parathread would have bought the core for nothing
6
            let assignment =
2548
                parachains_assigner_on_demand::Pallet::<Runtime>::pop_assignment_for_core(
2548
                    core_idx,
2548
                )?;
            // Let's check that we have collators before allowing an assignment
6
            if assigned_collators
6
                .container_chains
6
                .get(&assignment.para_id())
6
                .unwrap_or(&vec![])
6
                .len()
6
                > 0
            {
5
                Some(assignment)
            } else {
1
                None
            }
        }
2616
    }
13
    fn report_processed(assignment: Assignment) {
13
        match assignment {
            Assignment::Pool {
5
                para_id,
5
                core_index,
5
            } => parachains_assigner_on_demand::Pallet::<Runtime>::report_processed(
5
                para_id, core_index,
5
            ),
8
            Assignment::Bulk(_) => {}
        }
13
    }
    /// Push an assignment back to the front of the queue.
    ///
    /// The assignment has not been processed yet. Typically used on session boundaries.
    /// Parameters:
    /// - `assignment`: The on demand assignment.
    fn push_back_assignment(assignment: Assignment) {
        match assignment {
            Assignment::Pool {
                para_id,
                core_index,
            } => parachains_assigner_on_demand::Pallet::<Runtime>::push_back_assignment(
                para_id, core_index,
            ),
            Assignment::Bulk(_) => {
                // Session changes are rough. We just drop assignments that did not make it on a
                // session boundary. This seems sensible as bulk is region based. Meaning, even if
                // we made the effort catching up on those dropped assignments, this would very
                // likely lead to other assignments not getting served at the "end" (when our
                // assignment set gets replaced).
            }
        }
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn get_mock_assignment(_: CoreIndex, para_id: primitives::Id) -> Assignment {
        // Given that we are not tracking anything in `Bulk` assignments, it is safe to always
        // return a bulk assignment.
        Assignment::Bulk(para_id)
    }
    fn assignment_duplicated(assignment: &Assignment) {
        match assignment {
            Assignment::Pool {
                para_id,
                core_index,
            } => parachains_assigner_on_demand::Pallet::<Runtime>::assignment_duplicated(
                *para_id,
                *core_index,
            ),
            Assignment::Bulk(_) => {}
        }
    }
}
parameter_types! {
    pub const OnDemandTrafficDefaultValue: FixedU128 = FixedU128::from_u32(1);
    // Keep 2 blocks worth of revenue information.
    // We don't need this because it is only used by coretime and we don't have coretime,
    // but the pallet implicitly assumes that this bound is at least 1, so we use a low value
    // that won't cause problems.
    pub const MaxHistoricalRevenue: BlockNumber = 2;
    pub const OnDemandPalletId: PalletId = PalletId(*b"py/ondmd");
}
impl parachains_assigner_on_demand::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type Currency = Balances;
    type TrafficDefaultValue = OnDemandTrafficDefaultValue;
    type WeightInfo = weights::runtime_parachains_assigner_on_demand::SubstrateWeight<Runtime>;
    type MaxHistoricalRevenue = MaxHistoricalRevenue;
    type PalletId = OnDemandPalletId;
}
impl parachains_initializer::Config for Runtime {
    type Randomness = pallet_babe::RandomnessFromOneEpochAgo<Runtime>;
    type ForceOrigin = EnsureRoot<AccountId>;
    type WeightInfo = weights::runtime_parachains_initializer::SubstrateWeight<Runtime>;
    type CoretimeOnNewSession = ();
}
impl parachains_disputes::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RewardValidators = RewardValidators;
    type SlashingHandler = parachains_slashing::SlashValidatorsForDisputes<ParasSlashing>;
    type WeightInfo = weights::runtime_parachains_disputes::SubstrateWeight<Runtime>;
}
impl parachains_slashing::Config for Runtime {
    type KeyOwnerProofSystem = Historical;
    type KeyOwnerProof =
        <Self::KeyOwnerProofSystem as KeyOwnerProofSystem<(KeyTypeId, ValidatorId)>>::Proof;
    type KeyOwnerIdentification = <Self::KeyOwnerProofSystem as KeyOwnerProofSystem<(
        KeyTypeId,
        ValidatorId,
    )>>::IdentificationTuple;
    type HandleReports = parachains_slashing::SlashingReportHandler<
        Self::KeyOwnerIdentification,
        Offences,
        ReportLongevity,
    >;
    type WeightInfo = weights::runtime_parachains_disputes_slashing::SubstrateWeight<Runtime>;
    type BenchmarkingConfig = parachains_slashing::BenchConfig<200>;
}
parameter_types! {
    pub const ParaDeposit: Balance = 40 * UNITS;
}
impl paras_registrar::Config for Runtime {
    type RuntimeOrigin = RuntimeOrigin;
    type RuntimeEvent = RuntimeEvent;
    type Currency = Balances;
    type OnSwap = ();
    type ParaDeposit = ParaDeposit;
    type DataDepositPerByte = DataDepositPerByte;
    type WeightInfo = weights::runtime_common_paras_registrar::SubstrateWeight<Runtime>;
}
impl pallet_parameters::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeParameters = RuntimeParameters;
    type AdminOrigin = DynamicParameterOrigin;
    type WeightInfo = weights::pallet_parameters::SubstrateWeight<Runtime>;
}
parameter_types! {
    // check which value to use in Starlight.
    pub BeefySetIdSessionEntries: u32 = BondingDuration::get() * SessionsPerEra::get();
}
impl pallet_beefy::Config for Runtime {
    type BeefyId = BeefyId;
    type MaxAuthorities = MaxAuthorities;
    // MaxNominators is used in case we need to slash validators and check how many
    // nominators do they have as maximum.
    // This value is part of the parameters that are then used for extrinsics
    // weight computation.
    type MaxNominators = ConstU32<0>;
    type MaxSetIdSessionEntries = BeefySetIdSessionEntries;
    type OnNewValidatorSet = BeefyMmrLeaf;
    // There are currently no benchmarks for pallet_beefy.
    // https://github.com/paritytech/polkadot-sdk/tree/master/substrate/frame/beefy/src
    type WeightInfo = ();
    type KeyOwnerProof = <Historical as KeyOwnerProofSystem<(KeyTypeId, BeefyId)>>::Proof;
    type EquivocationReportSystem =
        pallet_beefy::EquivocationReportSystem<Self, Offences, Historical, ReportLongevity>;
    type AncestryHelper = BeefyMmrLeaf;
}
/// MMR helper types.
mod mmr {
    use super::Runtime;
    pub use pallet_mmr::primitives::*;
    pub type Leaf = <<Runtime as pallet_mmr::Config>::LeafData as LeafDataProvider>::LeafData;
    pub type Hashing = <Runtime as pallet_mmr::Config>::Hashing;
    pub type Hash = <Hashing as sp_runtime::traits::Hash>::Output;
}
impl pallet_mmr::Config for Runtime {
    const INDEXING_PREFIX: &'static [u8] = mmr::INDEXING_PREFIX;
    type Hashing = Keccak256;
    type OnNewRoot = pallet_beefy_mmr::DepositBeefyDigest<Runtime>;
    type WeightInfo = weights::pallet_mmr::SubstrateWeight<Runtime>;
    type LeafData = pallet_beefy_mmr::Pallet<Runtime>;
    type BlockHashProvider = pallet_mmr::DefaultBlockHashProvider<Runtime>;
    #[cfg(feature = "runtime-benchmarks")]
    type BenchmarkHelper = ();
}
parameter_types! {
    pub LeafVersion: MmrLeafVersion = MmrLeafVersion::new(0, 0);
}
#[derive(Debug, PartialEq, Eq, Clone, Encode, Decode)]
pub struct LeafExtraData {
    para_heads_root: H256,
    commitment_root: H256,
}
pub struct LeafExtraDataProvider;
impl BeefyDataProvider<LeafExtraData> for LeafExtraDataProvider {
3601
    fn extra_data() -> LeafExtraData {
3601
        let mut para_heads: Vec<(u32, Vec<u8>)> = parachains_paras::Parachains::<Runtime>::get()
3601
            .into_iter()
3601
            .filter_map(|id| {
2991
                parachains_paras::Heads::<Runtime>::get(id).map(|head| (id.into(), head.0))
3601
            })
3601
            .collect();
3601
        para_heads.sort();
3601
        let para_heads_root = binary_merkle_tree::merkle_root::<mmr::Hashing, _>(
3601
            para_heads.into_iter().map(|pair| pair.encode()),
3601
        );
3601

            
3601
        let commitment_root =
3601
            OutboundMessageCommitmentRecorder::take_commitment_root().unwrap_or_default();
3601

            
3601
        LeafExtraData {
3601
            para_heads_root,
3601
            commitment_root,
3601
        }
3601
    }
}
impl pallet_beefy_mmr::Config for Runtime {
    type LeafVersion = LeafVersion;
    type BeefyAuthorityToMerkleLeaf = pallet_beefy_mmr::BeefyEcdsaToEthereum;
    type LeafExtra = LeafExtraData;
    type BeefyDataProvider = LeafExtraDataProvider;
    type WeightInfo = weights::pallet_beefy_mmr::SubstrateWeight<Runtime>;
}
impl paras_sudo_wrapper::Config for Runtime {}
use {
    pallet_pooled_staking::traits::{IsCandidateEligible, Timer},
    pallet_staking::SessionInterface,
};
pub struct StarlightSessionInterface;
impl SessionInterface<AccountId> for StarlightSessionInterface {
    fn disable_validator(validator_index: u32) -> bool {
        Session::disable_index(validator_index)
    }
    fn validators() -> Vec<AccountId> {
        Session::validators()
    }
7
    fn prune_historical_up_to(up_to: SessionIndex) {
7
        Historical::prune_up_to(up_to);
7
    }
}
prod_or_fast_parameter_types! {
    pub const SessionsPerEra: SessionIndex = { prod: 4, fast: 3 };
    pub const SlashDeferDuration: EraIndex = { prod: 0, fast: 0 };
}
impl pallet_external_validators::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type UpdateOrigin = EnsureRoot<AccountId>;
    type HistoryDepth = ConstU32<84>;
    type MaxWhitelistedValidators = MaxWhitelistedValidators;
    type MaxExternalValidators = MaxExternalValidators;
    type ValidatorId = AccountId;
    type ValidatorIdOf = ValidatorIdOf;
    type ValidatorRegistration = Session;
    type UnixTime = Timestamp;
    type SessionsPerEra = SessionsPerEra;
    type OnEraStart = (ExternalValidatorSlashes, ExternalValidatorsRewards);
    type OnEraEnd = ExternalValidatorsRewards;
    type WeightInfo = weights::pallet_external_validators::SubstrateWeight<Runtime>;
    #[cfg(feature = "runtime-benchmarks")]
    type Currency = Balances;
}
pub struct TimestampProvider;
impl Get<u64> for TimestampProvider {
    fn get() -> u64 {
        Timestamp::get()
    }
}
parameter_types! {
    // Chain ID of Mainnet.
    // Output is: 204dfe37731e8e2b4866ad0da9a17c49f434542c3477c5f914a3349acd88ba1a
    pub EthereumSovereignAccount: AccountId =
        tp_bridge::EthereumLocationsConverterFor::<AccountId>::convert_location(
            &EthereumLocation::get()
        ).expect("to convert EthereumSovereignAccount");
    pub ExternalRewardsEraInflationProvider: u128 = ValidatorsInflationRatePerEra::get() * Balances::total_issuance();
    pub TokenLocationReanchored: Location = xcm_config::TokenLocation::get().reanchored(
        &EthereumLocation::get(),
        &xcm_config::UniversalLocation::get()
    ).expect("unable to reanchor reward token");
}
pub struct GetWhitelistedValidators;
impl Get<Vec<AccountId>> for GetWhitelistedValidators {
9
    fn get() -> Vec<AccountId> {
9
        pallet_external_validators::WhitelistedValidatorsActiveEra::<Runtime>::get().into()
9
    }
}
#[cfg(feature = "runtime-benchmarks")]
pub struct RewardsBenchHelper;
#[cfg(feature = "runtime-benchmarks")]
impl tp_bridge::TokenChannelSetterBenchmarkHelperTrait for RewardsBenchHelper {
    fn set_up_token(location: Location, token_id: TokenId) {
        snowbridge_pallet_system::ForeignToNativeId::<Runtime>::insert(&token_id, &location);
        snowbridge_pallet_system::NativeToForeignId::<Runtime>::insert(&location, &token_id);
    }
    fn set_up_channel(_channel_id: ChannelId, _para_id: ParaId, _agent_id: AgentId) {}
}
// Pallet to reward validators.
impl pallet_external_validators_rewards::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type EraIndexProvider = ExternalValidators;
    type HistoryDepth = ConstU32<64>;
    type BackingPoints = ConstU32<20>;
    type DisputeStatementPoints = ConstU32<20>;
    // TODO: add a proper way to retrieve the inflated tokens.
    // Will likely be through InflationRewards.
    type EraInflationProvider = ExternalRewardsEraInflationProvider;
    type ExternalIndexProvider = ExternalValidators;
    type GetWhitelistedValidators = GetWhitelistedValidators;
    type Hashing = Keccak256;
    type ValidateMessage = tp_bridge::MessageValidator<Runtime>;
    type OutboundQueue = tp_bridge::CustomSendMessage<Runtime, GetAggregateMessageOriginTanssi>;
    type Currency = Balances;
    type RewardsEthereumSovereignAccount = EthereumSovereignAccount;
    type TokenLocationReanchored = TokenLocationReanchored;
    type TokenIdFromLocation = EthereumSystem;
    type WeightInfo = weights::pallet_external_validators_rewards::SubstrateWeight<Runtime>;
    #[cfg(feature = "runtime-benchmarks")]
    type BenchmarkHelper = RewardsBenchHelper;
}
impl pallet_external_validator_slashes::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type ValidatorId = AccountId;
    type ValidatorIdOf = ValidatorIdOf;
    type SlashDeferDuration = SlashDeferDuration;
    type BondingDuration = BondingDuration;
    type SlashId = u32;
    type SessionInterface = StarlightSessionInterface;
    type EraIndexProvider = ExternalValidators;
    type InvulnerablesProvider = ExternalValidators;
    type ValidateMessage = tp_bridge::MessageValidator<Runtime>;
    type OutboundQueue = tp_bridge::CustomSendMessage<Runtime, GetAggregateMessageOriginTanssi>;
    type ExternalIndexProvider = ExternalValidators;
    type QueuedSlashesProcessedPerBlock = ConstU32<10>;
    type WeightInfo = weights::pallet_external_validator_slashes::SubstrateWeight<Runtime>;
}
impl pallet_sudo::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeCall = RuntimeCall;
    type WeightInfo = weights::pallet_sudo::SubstrateWeight<Runtime>;
}
impl pallet_root_testing::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
}
impl pallet_asset_rate::Config for Runtime {
    type WeightInfo = weights::pallet_asset_rate::SubstrateWeight<Runtime>;
    type RuntimeEvent = RuntimeEvent;
    type CreateOrigin = EnsureRoot<AccountId>;
    type RemoveOrigin = EnsureRoot<AccountId>;
    type UpdateOrigin = EnsureRoot<AccountId>;
    type Currency = Balances;
    type AssetKind = <Runtime as pallet_treasury::Config>::AssetKind;
    #[cfg(feature = "runtime-benchmarks")]
    type BenchmarkHelper = ();
}
parameter_types! {
    pub const MaxInvulnerables: u32 = 100;
    pub const MaxWhitelistedValidators: u32 = 100;
    pub const MaxExternalValidators: u32 = 100;
}
impl pallet_invulnerables::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type UpdateOrigin = EnsureRoot<AccountId>;
    type MaxInvulnerables = MaxInvulnerables;
    type CollatorId = <Self as frame_system::Config>::AccountId;
    type CollatorIdOf = ConvertInto;
    type CollatorRegistration = Session;
    type WeightInfo = weights::pallet_invulnerables::SubstrateWeight<Runtime>;
    #[cfg(feature = "runtime-benchmarks")]
    type Currency = Balances;
}
pub struct CurrentSessionIndexGetter;
impl tp_traits::GetSessionIndex<SessionIndex> for CurrentSessionIndexGetter {
    /// Returns current session index.
43
    fn session_index() -> SessionIndex {
43
        Session::current_index()
43
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn skip_to_session(session_index: SessionIndex) {
        while Session::current_index() < session_index {
            Session::rotate_session();
        }
    }
}
impl pallet_configuration::Config for Runtime {
    type SessionDelay = ConstU32<2>;
    type SessionIndex = SessionIndex;
    type CurrentSessionIndex = CurrentSessionIndexGetter;
    type ForceEmptyOrchestrator = ConstBool<true>;
    type WeightInfo = weights::pallet_configuration::SubstrateWeight<Runtime>;
}
impl pallet_migrations::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type MigrationsList = (tanssi_runtime_common::migrations::StarlightMigrations<Runtime>,);
    type XcmExecutionManager = ();
}
parameter_types! {
    pub MbmServiceWeight: Weight = Perbill::from_percent(80) * BlockWeights::get().max_block;
}
impl pallet_multiblock_migrations::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    #[cfg(not(feature = "runtime-benchmarks"))]
    type Migrations = pallet_identity::migration::v2::LazyMigrationV1ToV2<Runtime>;
    // Benchmarks need mocked migrations to guarantee that they succeed.
    #[cfg(feature = "runtime-benchmarks")]
    type Migrations = pallet_multiblock_migrations::mock_helpers::MockedMigrations;
    type CursorMaxLen = ConstU32<65_536>;
    type IdentifierMaxLen = ConstU32<256>;
    type MigrationStatusHandler = ();
    type FailedMigrationHandler = frame_support::migrations::FreezeChainOnFailedMigration;
    type MaxServiceWeight = MbmServiceWeight;
    type WeightInfo = weights::pallet_multiblock_migrations::SubstrateWeight<Runtime>;
}
pub const FIXED_BLOCK_PRODUCTION_COST: u128 = 1 * MICROUNITS;
pub const FIXED_COLLATOR_ASSIGNMENT_COST: u128 = 100 * MICROUNITS;
pub struct BlockProductionCost<Runtime>(PhantomData<Runtime>);
impl ProvideBlockProductionCost<Runtime> for BlockProductionCost<Runtime> {
757
    fn block_cost(_para_id: &ParaId) -> (u128, Weight) {
757
        (FIXED_BLOCK_PRODUCTION_COST, Weight::zero())
757
    }
}
pub struct CollatorAssignmentCost<Runtime>(PhantomData<Runtime>);
impl ProvideCollatorAssignmentCost<Runtime> for CollatorAssignmentCost<Runtime> {
19
    fn collator_assignment_cost(_para_id: &ParaId) -> (u128, Weight) {
19
        (FIXED_COLLATOR_ASSIGNMENT_COST, Weight::zero())
19
    }
}
parameter_types! {
    // 60 days worth of blocks
    pub const FreeBlockProductionCredits: BlockNumber = 60 * DAYS;
    // 60 days worth of collator assignment
    pub const FreeCollatorAssignmentCredits: u32 = FreeBlockProductionCredits::get()/EpochDurationInBlocks::get();
}
impl pallet_services_payment::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    /// Handler for fees
    type OnChargeForBlock = ();
    type OnChargeForCollatorAssignment = ();
    type OnChargeForCollatorAssignmentTip = ();
    /// Currency type for fee payment
    type Currency = Balances;
    /// Provider of a block cost which can adjust from block to block
    type ProvideBlockProductionCost = BlockProductionCost<Runtime>;
    /// Provider of a block cost which can adjust from block to block
    type ProvideCollatorAssignmentCost = CollatorAssignmentCost<Runtime>;
    /// The maximum number of block credits that can be accumulated
    type FreeBlockProductionCredits = FreeBlockProductionCredits;
    /// The maximum number of session credits that can be accumulated
    type FreeCollatorAssignmentCredits = FreeCollatorAssignmentCredits;
    type ManagerOrigin = EnsureRoot<AccountId>;
    type WeightInfo = weights::pallet_services_payment::SubstrateWeight<Runtime>;
}
pub const OPEN_STREAM_HOLD_AMOUNT: u32 = 253;
parameter_types! {
    // 1 entry, storing 253 bytes on-chain in the worst case
    pub const OpenStreamHoldAmount: Balance = deposit(1, OPEN_STREAM_HOLD_AMOUNT);
}
impl pallet_stream_payment::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type StreamId = tp_stream_payment_common::StreamId;
    type TimeUnit = tp_stream_payment_common::TimeUnit;
    type Balance = Balance;
    type AssetId = tp_stream_payment_common::AssetId;
    type AssetsManager = tp_stream_payment_common::AssetsManager<Runtime>;
    type Currency = Balances;
    type OpenStreamHoldAmount = OpenStreamHoldAmount;
    type RuntimeHoldReason = RuntimeHoldReason;
    type TimeProvider = tp_stream_payment_common::TimeProvider<Runtime>;
    type WeightInfo = weights::pallet_stream_payment::SubstrateWeight<Runtime>;
}
parameter_types! {
    pub const ProfileDepositBaseFee: Balance = STORAGE_ITEM_FEE;
    pub const ProfileDepositByteFee: Balance = STORAGE_BYTE_FEE;
    #[derive(Clone)]
    pub const MaxAssignmentsPerParaId: u32 = 10;
    #[derive(Clone)]
    pub const MaxNodeUrlLen: u32 = 200;
}
impl pallet_data_preservers::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeHoldReason = RuntimeHoldReason;
    type Currency = Balances;
    type WeightInfo = weights::pallet_data_preservers::SubstrateWeight<Runtime>;
    type ProfileId = u64;
    type ProfileDeposit = tp_traits::BytesDeposit<ProfileDepositBaseFee, ProfileDepositByteFee>;
    type AssignmentProcessor = tp_data_preservers_common::AssignmentProcessor<Runtime>;
    type AssignmentOrigin = pallet_registrar::EnsureSignedByManager<Runtime>;
    type ForceSetProfileOrigin = EnsureRoot<AccountId>;
    type MaxAssignmentsPerParaId = MaxAssignmentsPerParaId;
    type MaxNodeUrlLen = MaxNodeUrlLen;
    type MaxParaIdsVecLen = MaxLengthParaIds;
}
parameter_types! {
    pub StarlightBondAccount: AccountId32 = PalletId(*b"StarBond").into_account_truncating();
    pub PendingRewardsAccount: AccountId32 = PalletId(*b"PENDREWD").into_account_truncating();
    // Parachain bond: 1.5% out of 100%, so staking gets 2% out of 100%,
    // so staking gets 2/3.5 fracion of rewards, so 4/7
    pub RewardsPortion: Perbill = Perbill::from_rational::<u32>(4, 7);
}
// We want a global annual inflation rate of 10%.
// It is compounded throught era inflations, which itself is split between:
// - Inflation for collators per block
// - Inflation for validators per era
// Computation is implemented in tests/inflation_rates.rs, with a test ensuring values from the
// runtime match the formulas. We write the results as constants here to ensure we don't perform
// computations at runtime.
prod_or_fast_parameter_types! {
    pub const CollatorsInflationRatePerBlock: Perbill = { prod: Perbill::from_parts(6), fast: Perbill::from_parts(6) };
    pub const ValidatorsInflationRatePerEra: Perbill = { prod: Perbill::from_parts(105679), fast: Perbill::from_parts(220) };
}
pub struct OnUnbalancedInflation;
impl frame_support::traits::OnUnbalanced<Credit<AccountId, Balances>> for OnUnbalancedInflation {
1457
    fn on_nonzero_unbalanced(credit: Credit<AccountId, Balances>) {
1457
        let _ = <Balances as Balanced<_>>::resolve(&StarlightBondAccount::get(), credit);
1457
    }
}
// Pallet to reward container chains collators.
impl pallet_inflation_rewards::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type Currency = Balances;
    type ContainerChains = ContainerRegistrar;
    type GetSelfChainBlockAuthor = ();
    type InflationRate = CollatorsInflationRatePerBlock;
    type OnUnbalanced = OnUnbalancedInflation;
    type PendingRewardsAccount = PendingRewardsAccount;
    type StakingRewardsDistributor = InvulnerableRewardDistribution<Self, Balances, PooledStaking>;
    type RewardsPortion = RewardsPortion;
}
parameter_types! {
    pub StakingAccount: AccountId32 = PalletId(*b"POOLSTAK").into_account_truncating();
    pub const InitialManualClaimShareValue: u128 = MILLIUNITS;
    pub const InitialAutoCompoundingShareValue: u128 = MILLIUNITS;
    pub const MinimumSelfDelegation: u128 = 10_000 * UNITS;
    pub const RewardsCollatorCommission: Perbill = Perbill::from_percent(20);
    // Need to wait 2 sessions before being able to join or leave staking pools
    pub const StakingSessionDelay: u32 = 2;
}
pub struct SessionTimer<Delay>(PhantomData<Delay>);
impl<Delay> Timer for SessionTimer<Delay>
where
    Delay: Get<u32>,
{
    type Instant = u32;
47
    fn now() -> Self::Instant {
47
        Session::current_index()
47
    }
16
    fn is_elapsed(instant: &Self::Instant) -> bool {
16
        let delay = Delay::get();
16
        let Some(end) = instant.checked_add(delay) else {
            return false;
        };
16
        end <= Self::now()
16
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn elapsed_instant() -> Self::Instant {
        let delay = Delay::get();
        Self::now()
            .checked_add(delay)
            .expect("overflow when computing valid elapsed instant")
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn skip_to_elapsed() {
        let session_to_reach = Self::elapsed_instant();
        while Self::now() < session_to_reach {
            Session::rotate_session();
        }
    }
}
pub struct CandidateHasRegisteredKeys;
impl IsCandidateEligible<AccountId> for CandidateHasRegisteredKeys {
24
    fn is_candidate_eligible(a: &AccountId) -> bool {
24
        <Session as ValidatorRegistration<AccountId>>::is_registered(a)
24
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn make_candidate_eligible(a: &AccountId, eligible: bool) {
        use crate::genesis_config_presets::get_authority_keys_from_seed;
        if eligible {
            let a_u8: &[u8] = a.as_ref();
            let seed = scale_info::prelude::format!("{:?}", a_u8);
            let authority_keys = get_authority_keys_from_seed(&seed);
            let _ = Session::set_keys(
                RuntimeOrigin::signed(a.clone()),
                SessionKeys {
                    grandpa: authority_keys.grandpa,
                    babe: authority_keys.babe,
                    para_validator: authority_keys.para_validator,
                    para_assignment: authority_keys.para_assignment,
                    authority_discovery: authority_keys.authority_discovery,
                    beefy: authority_keys.beefy,
                    nimbus: authority_keys.nimbus,
                },
                vec![],
            );
        } else {
            let _ = Session::purge_keys(RuntimeOrigin::signed(a.clone()));
        }
    }
}
impl pallet_pooled_staking::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type Currency = Balances;
    type Balance = Balance;
    type StakingAccount = StakingAccount;
    type InitialManualClaimShareValue = InitialManualClaimShareValue;
    type InitialAutoCompoundingShareValue = InitialAutoCompoundingShareValue;
    type MinimumSelfDelegation = MinimumSelfDelegation;
    type RuntimeHoldReason = RuntimeHoldReason;
    type RewardsCollatorCommission = RewardsCollatorCommission;
    type JoiningRequestTimer = SessionTimer<StakingSessionDelay>;
    type LeavingRequestTimer = SessionTimer<StakingSessionDelay>;
    type EligibleCandidatesBufferSize = ConstU32<100>;
    type EligibleCandidatesFilter = CandidateHasRegisteredKeys;
    type WeightInfo = weights::pallet_pooled_staking::SubstrateWeight<Runtime>;
}
705276
construct_runtime! {
21436
    pub enum Runtime
21436
    {
21436
        // Basic stuff; balances is uncallable initially.
21436
        System: frame_system = 0,
21436

            
21436
        // Babe must be before session.
21436
        Babe: pallet_babe = 1,
21436

            
21436
        Timestamp: pallet_timestamp = 2,
21436
        Balances: pallet_balances = 3,
21436
        Parameters: pallet_parameters = 4,
21436
        TransactionPayment: pallet_transaction_payment = 5,
21436

            
21436
        // Consensus support.
21436
        // Authorship must be before session in order to note author in the correct session and era.
21436
        Authorship: pallet_authorship = 6,
21436
        Offences: pallet_offences = 7,
21436
        Historical: session_historical = 8,
21436

            
21436
        // Container stuff should go before session
21436
        // Container stuff starts at index 10
21436
        ContainerRegistrar: pallet_registrar = 10,
21436
        CollatorConfiguration: pallet_configuration = 11,
21436
        TanssiInitializer: tanssi_initializer = 12,
21436
        TanssiInvulnerables: pallet_invulnerables = 13,
21436
        TanssiCollatorAssignment: pallet_collator_assignment = 14,
21436
        TanssiAuthorityAssignment: pallet_authority_assignment = 15,
21436
        TanssiAuthorityMapping: pallet_authority_mapping = 16,
21436
        AuthorNoting: pallet_author_noting = 17,
21436
        ServicesPayment: pallet_services_payment = 18,
21436
        DataPreservers: pallet_data_preservers = 19,
21436

            
21436
        // Validator stuff
21436
        ExternalValidators: pallet_external_validators = 20,
21436
        ExternalValidatorSlashes: pallet_external_validator_slashes = 21,
21436
        ExternalValidatorsRewards: pallet_external_validators_rewards = 22,
21436

            
21436
        // Bridging stuff - 1
21436
        EthereumOutboundQueue: snowbridge_pallet_outbound_queue = 23,
21436
        EthereumInboundQueue: snowbridge_pallet_inbound_queue = 24,
21436
        EthereumSystem: snowbridge_pallet_system = 25,
21436
        OutboundMessageCommitmentRecorder: pallet_outbound_message_commitment_recorder = 26,
21436
        EthereumTokenTransfers: pallet_ethereum_token_transfers = 27,
21436

            
21436
        // Session management
21436
        Session: pallet_session = 30,
21436
        Grandpa: pallet_grandpa = 31,
21436
        AuthorityDiscovery: pallet_authority_discovery = 32,
21436

            
21436
        // InflationRewards must be after Session
21436
        InflationRewards: pallet_inflation_rewards = 33,
21436
        PooledStaking: pallet_pooled_staking = 34,
21436

            
21436
        // Governance stuff; uncallable initially.
21436
        Treasury: pallet_treasury = 40,
21436
        ConvictionVoting: pallet_conviction_voting = 41,
21436
        Referenda: pallet_referenda = 42,
21436
        //	pub type FellowshipCollectiveInstance = pallet_ranked_collective::Instance1;
21436
        FellowshipCollective: pallet_ranked_collective::<Instance1> = 43,
21436
        // pub type FellowshipReferendaInstance = pallet_referenda::Instance2;
21436
        FellowshipReferenda: pallet_referenda::<Instance2> = 44,
21436
        Origins: pallet_custom_origins = 45,
21436
        Whitelist: pallet_whitelist = 46,
21436

            
21436
        // Parachains pallets. Start indices at 50 to leave room.
21436
        ParachainsOrigin: parachains_origin = 50,
21436
        Configuration: parachains_configuration = 51,
21436
        ParasShared: parachains_shared = 52,
21436
        ParaInclusion: parachains_inclusion = 53,
21436
        ParaInherent: parachains_paras_inherent = 54,
21436
        ParaScheduler: parachains_scheduler = 55,
21436
        Paras: parachains_paras = 56,
21436
        Initializer: parachains_initializer = 57,
21436
        Dmp: parachains_dmp = 58,
21436
        Hrmp: parachains_hrmp = 60,
21436
        ParaSessionInfo: parachains_session_info = 61,
21436
        ParasDisputes: parachains_disputes = 62,
21436
        ParasSlashing: parachains_slashing = 63,
21436
        MessageQueue: pallet_message_queue = 64,
21436
        OnDemandAssignmentProvider: parachains_assigner_on_demand = 65,
21436

            
21436
        // Parachain Onboarding Pallets. Start indices at 70 to leave room.
21436
        Registrar: paras_registrar = 70,
21436

            
21436
        // Utility module.
21436
        Utility: pallet_utility = 80,
21436

            
21436
        // Less simple identity module.
21436
        Identity: pallet_identity = 81,
21436

            
21436
        // System scheduler.
21436
        Scheduler: pallet_scheduler = 82,
21436

            
21436
        // Proxy module. Late addition.
21436
        Proxy: pallet_proxy = 83,
21436

            
21436
        // Multisig module. Late addition.
21436
        Multisig: pallet_multisig = 84,
21436

            
21436
        // Preimage registrar.
21436
        Preimage: pallet_preimage = 85,
21436

            
21436
        // Asset rate.
21436
        AssetRate: pallet_asset_rate = 86,
21436

            
21436
        // Pallet for sending XCM.
21436
        XcmPallet: pallet_xcm = 90,
21436

            
21436
        StreamPayment: pallet_stream_payment = 100,
21436

            
21436
        // Migration stuff
21436
        Migrations: pallet_migrations = 120,
21436
        MultiBlockMigrations: pallet_multiblock_migrations = 121,
21436

            
21436
        // BEEFY Bridges support.
21436
        Beefy: pallet_beefy = 240,
21436
        // MMR leaf construction must be after session in order to have a leaf's next_auth_set
21436
        // refer to block<N>.
21436
        Mmr: pallet_mmr = 241,
21436
        BeefyMmrLeaf: pallet_beefy_mmr = 242,
21436
        EthereumBeaconClient: snowbridge_pallet_ethereum_client = 243,
21436

            
21436
        ParasSudoWrapper: paras_sudo_wrapper = 250,
21436

            
21436
        // Root testing pallet.
21436
        RootTesting: pallet_root_testing = 249,
21436

            
21436
        // Sudo.
21436
        Sudo: pallet_sudo = 255,
21436
    }
706440
}
/// The address format for describing accounts.
pub type Address = sp_runtime::MultiAddress<AccountId, ()>;
/// Block header type as expected by this runtime.
pub type Header = generic::Header<BlockNumber, BlakeTwo256>;
/// 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 `TxExtension` to the basic transaction logic.
pub type TxExtension = (
    frame_system::CheckNonZeroSender<Runtime>,
    frame_system::CheckSpecVersion<Runtime>,
    frame_system::CheckTxVersion<Runtime>,
    frame_system::CheckGenesis<Runtime>,
    frame_system::CheckMortality<Runtime>,
    frame_system::CheckNonce<Runtime>,
    frame_system::CheckWeight<Runtime>,
    pallet_transaction_payment::ChargeTransactionPayment<Runtime>,
    frame_metadata_hash_extension::CheckMetadataHash<Runtime>,
);
/// Unchecked extrinsic type as expected by this runtime.
pub type UncheckedExtrinsic =
    generic::UncheckedExtrinsic<Address, RuntimeCall, Signature, TxExtension>;
/// The runtime migrations per release.
pub mod migrations {
    /// Unreleased migrations. Add new ones here:
    pub type Unreleased = ();
}
/// Executive: handles dispatch to the various modules.
pub type Executive = frame_executive::Executive<
    Runtime,
    Block,
    frame_system::ChainContext<Runtime>,
    Runtime,
    AllPalletsWithSystem,
    migrations::Unreleased,
>;
/// The payload being signed in transactions.
pub type SignedPayload = generic::SignedPayload<RuntimeCall, TxExtension>;
parameter_types! {
    #[derive(Clone)]
    pub const MaxLengthParaIds: u32 = 100u32;
    pub const MaxEncodedGenesisDataSize: u32 = 5_000_000u32; // 5MB
}
pub struct InnerStarlightRegistrar<Runtime, AccountId, RegistrarManager, RegistrarWeightInfo>(
    PhantomData<(Runtime, AccountId, RegistrarManager, RegistrarWeightInfo)>,
);
impl<Runtime, AccountId, RegistrarManager, RegistrarWeightInfo> RegistrarHandler<AccountId>
    for InnerStarlightRegistrar<Runtime, AccountId, RegistrarManager, RegistrarWeightInfo>
where
    RegistrarManager: RegistrarInterface<AccountId = AccountId>,
    RegistrarWeightInfo: paras_registrar::WeightInfo,
    Runtime: pallet_registrar::Config + paras_registrar::Config,
    sp_runtime::AccountId32: From<AccountId>,
{
33
    fn register(
33
        who: AccountId,
33
        id: ParaId,
33
        genesis_storage: &[ContainerChainGenesisDataItem],
33
        head_data: Option<HeadData>,
33
    ) -> DispatchResult {
        // Return early if head_data is not specified
33
        let genesis_head = match head_data {
33
            Some(data) => data,
            None => return Err(ContainerRegistrarError::<Runtime>::HeadDataNecessary.into()),
        };
        // Check if the wasm code is present in storage
33
        let validation_code = match genesis_storage
33
            .iter()
33
            .find(|item| item.key == StorageWellKnownKeys::CODE)
        {
33
            Some(item) => ValidationCode(item.value.clone()),
            None => return Err(ContainerRegistrarError::<Runtime>::WasmCodeNecessary.into()),
        };
        // Try to register the parachain
        // Using register extrinsic instead of `RegistrarInterface` trait because we want
        // to check that the para id has been reserved.
33
        Registrar::register(
33
            RuntimeOrigin::signed(who.into()),
33
            id,
33
            genesis_head,
33
            validation_code,
33
        )
33
    }
23
    fn schedule_para_upgrade(id: ParaId) -> DispatchResult {
23
        // Return Ok() if the paraId is already a parachain in the relay context
23
        if !RegistrarManager::is_parachain(id) {
23
            return RegistrarManager::make_parachain(id);
        }
        Ok(())
23
    }
7
    fn schedule_para_downgrade(id: ParaId) -> DispatchResult {
7
        // Return Ok() if the paraId is already a parathread in the relay context
7
        if !RegistrarManager::is_parathread(id) {
7
            return RegistrarManager::make_parathread(id);
        }
        Ok(())
7
    }
3
    fn deregister(id: ParaId) {
3
        if let Err(e) = RegistrarManager::deregister(id) {
            log::warn!(
                "Failed to deregister para id {} in relay chain: {:?}",
                u32::from(id),
                e,
            );
3
        }
3
    }
3
    fn deregister_weight() -> Weight {
3
        RegistrarWeightInfo::deregister()
3
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn bench_head_data() -> Option<HeadData> {
        let head_data = HeadData(vec![1; 10]);
        Some(head_data)
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn add_trusted_validation_code(code: Vec<u8>) {
        Paras::add_trusted_validation_code(RuntimeOrigin::root(), code.into()).unwrap();
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn registrar_new_session(session: u32) {
        benchmark_helpers::run_to_session(session)
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn prepare_chain_registration(id: ParaId, who: AccountId) {
        use frame_support::assert_ok;
        paras_registrar::NextFreeParaId::<Runtime>::put(id);
        assert_eq!(paras_registrar::NextFreeParaId::<Runtime>::get(), id);
        assert_ok!(Registrar::reserve(RuntimeOrigin::signed(who.into())));
    }
}
impl pallet_registrar::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    // TODO: revert to non-sudo later after stable
    type RegistrarOrigin = EnsureRoot<AccountId>;
    type MarkValidForCollatingOrigin = EnsureRoot<AccountId>;
    type MaxLengthParaIds = MaxLengthParaIds;
    type MaxGenesisDataSize = MaxEncodedGenesisDataSize;
    type RegisterWithRelayProofOrigin = EnsureNever<AccountId>;
    type RelayStorageRootProvider = ();
    type SessionDelay = ConstU32<2>;
    type SessionIndex = u32;
    type CurrentSessionIndex = CurrentSessionIndexGetter;
    type Currency = Balances;
    type RegistrarHooks = StarlightRegistrarHooks;
    type RuntimeHoldReason = RuntimeHoldReason;
    type InnerRegistrar = InnerStarlightRegistrar<
        Runtime,
        AccountId,
        Registrar,
        weights::runtime_common_paras_registrar::SubstrateWeight<Runtime>,
    >;
    type WeightInfo = weights::pallet_registrar::SubstrateWeight<Runtime>;
    type DataDepositPerByte = DataDepositPerByte;
}
pub struct StarlightRegistrarHooks;
impl pallet_registrar::RegistrarHooks for StarlightRegistrarHooks {
23
    fn para_marked_valid_for_collating(para_id: ParaId) -> Weight {
23
        // Give free credits but only once per para id
23
        ServicesPayment::give_free_credits(&para_id)
23
    }
8
    fn para_deregistered(para_id: ParaId) -> Weight {
8
        if let Err(e) = AuthorNoting::kill_author_data(RuntimeOrigin::root(), para_id) {
            log::warn!(
                "Failed to kill_author_data after para id {} deregistered: {:?}",
                u32::from(para_id),
                e,
            );
8
        }
        /*
        XcmCoreBuyer::para_deregistered(para_id);
        */
        // Remove bootnodes from pallet_data_preservers
8
        DataPreservers::para_deregistered(para_id);
8

            
8
        ServicesPayment::para_deregistered(para_id);
8

            
8
        Weight::default()
8
    }
24
    fn check_valid_for_collating(para_id: ParaId) -> DispatchResult {
24
        // To be able to call mark_valid_for_collating, a container chain must have bootnodes
24
        DataPreservers::check_valid_for_collating(para_id)
24
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn benchmarks_ensure_valid_for_collating(para_id: ParaId) {
        use {
            frame_support::traits::EnsureOriginWithArg,
            pallet_data_preservers::{ParaIdsFilter, Profile, ProfileMode},
        };
        let profile = Profile {
            url: b"/ip4/127.0.0.1/tcp/33049/ws/p2p/12D3KooWHVMhQDHBpj9vQmssgyfspYecgV6e3hH1dQVDUkUbCYC9"
                .to_vec()
                .try_into()
                .expect("to fit in BoundedVec"),
            para_ids: ParaIdsFilter::AnyParaId,
            mode: ProfileMode::Bootnode,
            assignment_request: tp_data_preservers_common::ProviderRequest::Free,
        };
        let profile_id = pallet_data_preservers::NextProfileId::<Runtime>::get();
        let profile_owner = AccountId::new([1u8; 32]);
        DataPreservers::force_create_profile(RuntimeOrigin::root(), profile, profile_owner)
            .expect("profile create to succeed");
        let para_manager =
            <Runtime as pallet_data_preservers::Config>::AssignmentOrigin::try_successful_origin(
                &para_id,
            )
            .expect("should be able to get para manager");
        DataPreservers::start_assignment(
            para_manager,
            profile_id,
            para_id,
            tp_data_preservers_common::AssignerExtra::Free,
        )
        .expect("assignment to work");
        assert!(
            pallet_data_preservers::Assignments::<Runtime>::get(para_id).contains(&profile_id),
            "profile should be correctly assigned"
        );
    }
}
pub struct BabeSlotBeacon;
impl BlockNumberProvider for BabeSlotBeacon {
    type BlockNumber = u32;
8
    fn current_block_number() -> Self::BlockNumber {
8
        // TODO: nimbus_primitives::SlotBeacon requires u32, but this is a u64 in pallet_babe, and
8
        // also it gets converted to u64 in pallet_author_noting, so let's do something to remove
8
        // this intermediate u32 conversion, such as using a different trait
8
        u64::from(pallet_babe::CurrentSlot::<Runtime>::get()) as u32
8
    }
}
impl pallet_author_noting::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type ContainerChains = TanssiCollatorAssignment;
    type SlotBeacon = BabeSlotBeacon;
    type ContainerChainAuthor = TanssiCollatorAssignment;
    type AuthorNotingHook = (InflationRewards, ServicesPayment);
    type RelayOrPara = pallet_author_noting::RelayMode;
    type MaxContainerChains = MaxLengthParaIds;
    type WeightInfo = weights::pallet_author_noting::SubstrateWeight<Runtime>;
}
frame_support::ord_parameter_types! {
    pub const MigController: AccountId = AccountId::from(hex_literal::hex!("52bc71c1eca5353749542dfdf0af97bf764f9c2f44e860cd485f1cd86400f649"));
}
#[cfg(feature = "runtime-benchmarks")]
mod benches {
    frame_benchmarking::define_benchmarks!(
        // Polkadot
        // NOTE: Make sure to prefix these with `runtime_common::` so
        // the that path resolves correctly in the generated file.
        [runtime_common::paras_registrar, Registrar]
        [runtime_parachains::configuration, Configuration]
        [runtime_parachains::hrmp, Hrmp]
        [runtime_parachains::disputes, ParasDisputes]
        [runtime_parachains::inclusion, ParaInclusion]
        [runtime_parachains::initializer, Initializer]
        [runtime_parachains::paras_inherent, ParaInherent]
        [runtime_parachains::paras, Paras]
        [runtime_parachains::assigner_on_demand, OnDemandAssignmentProvider]
        [runtime_parachains::disputes::slashing, pallet_alt_benchmarks::bench_parachains_slashing::Pallet::<Runtime>]
        // Substrate
        [pallet_balances, Balances]
        [frame_benchmarking::baseline, Baseline::<Runtime>]
        [pallet_conviction_voting, ConvictionVoting]
        [pallet_identity, Identity]
        [pallet_message_queue, MessageQueue]
        [pallet_multiblock_migrations, MultiBlockMigrations]
        [pallet_multisig, Multisig]
        [pallet_parameters, Parameters]
        [pallet_preimage, Preimage]
        [pallet_proxy, Proxy]
        [pallet_ranked_collective, FellowshipCollective]
        [pallet_referenda, Referenda]
        [pallet_scheduler, Scheduler]
        [pallet_sudo, Sudo]
        [frame_system, SystemBench::<Runtime>]
        [frame_system_extensions, frame_system_benchmarking::extensions::Pallet::<Runtime>]
        [pallet_timestamp, Timestamp]
        [pallet_transaction_payment, TransactionPayment]
        [pallet_treasury, Treasury]
        [pallet_utility, Utility]
        [pallet_asset_rate, AssetRate]
        [pallet_whitelist, Whitelist]
        [pallet_services_payment, ServicesPayment]
        [pallet_mmr, Mmr]
        [pallet_beefy_mmr, BeefyMmrLeaf]
        [pallet_multiblock_migrations, MultiBlockMigrations]
        [pallet_session, cumulus_pallet_session_benchmarking::Pallet::<Runtime>]
        // Tanssi
        [pallet_author_noting, AuthorNoting]
        [pallet_registrar, ContainerRegistrar]
        [pallet_collator_assignment, TanssiCollatorAssignment]
        [pallet_external_validators, ExternalValidators]
        [pallet_external_validators_rewards, ExternalValidatorsRewards]
        [pallet_external_validator_slashes, ExternalValidatorSlashes]
        [pallet_invulnerables, TanssiInvulnerables]
        [pallet_data_preservers, DataPreservers]
        [pallet_pooled_staking, PooledStaking]
        [pallet_configuration, CollatorConfiguration]
        [pallet_stream_payment, StreamPayment]
        // XCM
        [pallet_xcm, PalletXcmExtrinsicsBenchmark::<Runtime>]
        [pallet_xcm_benchmarks::fungible, pallet_xcm_benchmarks::fungible::Pallet::<Runtime>]
        [pallet_xcm_benchmarks::generic, pallet_xcm_benchmarks::generic::Pallet::<Runtime>]
        // Bridges
        [pallet_ethereum_token_transfers, EthereumTokenTransfers]
        [snowbridge_pallet_ethereum_client, EthereumBeaconClient]
        [snowbridge_pallet_outbound_queue, EthereumOutboundQueue]
        [snowbridge_pallet_system, EthereumSystem]
        [snowbridge_pallet_inbound_queue, EthereumInboundQueue]
    );
}
sp_api::impl_runtime_apis! {
    impl sp_api::Core<Block> for Runtime {
        fn version() -> RuntimeVersion {
            VERSION
        }
        fn execute_block(block: Block) {
            Executive::execute_block(block);
        }
        fn initialize_block(header: &<Block as BlockT>::Header) -> sp_runtime::ExtrinsicInclusionMode {
            Executive::initialize_block(header)
        }
    }
    impl xcm_runtime_apis::dry_run::DryRunApi<Block, RuntimeCall, RuntimeEvent, OriginCaller> for Runtime {
        fn dry_run_call(origin: OriginCaller, call: RuntimeCall) -> Result<CallDryRunEffects<RuntimeEvent>, XcmDryRunApiError> {
            XcmPallet::dry_run_call::<Runtime, xcm_config::XcmRouter, OriginCaller, RuntimeCall>(origin, call)
        }
        fn dry_run_xcm(origin_location: VersionedLocation, xcm: VersionedXcm<RuntimeCall>) -> Result<XcmDryRunEffects<RuntimeEvent>, XcmDryRunApiError> {
            XcmPallet::dry_run_xcm::<Runtime, xcm_config::XcmRouter, RuntimeCall, xcm_config::XcmConfig>(origin_location, xcm)
        }
    }
    impl xcm_runtime_apis::fees::XcmPaymentApi<Block> for Runtime {
        fn query_acceptable_payment_assets(xcm_version: xcm::Version) -> Result<Vec<VersionedAssetId>, XcmPaymentApiError> {
            if !matches!(xcm_version, 3..=5) {
                return Err(XcmPaymentApiError::UnhandledXcmVersion);
            }
            Ok([VersionedAssetId::V5(xcm_config::TokenLocation::get().into())]
                .into_iter()
                .filter_map(|asset| asset.into_version(xcm_version).ok())
                .collect())
        }
        fn query_weight_to_asset_fee(weight: Weight, asset: VersionedAssetId) -> Result<u128, XcmPaymentApiError> {
            let local_asset = VersionedAssetId::V5(xcm_config::TokenLocation::get().into());
            let asset = asset
                .into_version(5)
                .map_err(|_| XcmPaymentApiError::VersionedConversionFailed)?;
            if  asset != local_asset { return Err(XcmPaymentApiError::AssetNotFound); }
            Ok(WeightToFee::weight_to_fee(&weight))
        }
        fn query_xcm_weight(message: VersionedXcm<()>) -> Result<Weight, XcmPaymentApiError> {
            XcmPallet::query_xcm_weight(message)
        }
        fn query_delivery_fees(destination: VersionedLocation, message: VersionedXcm<()>) -> Result<VersionedAssets, XcmPaymentApiError> {
            XcmPallet::query_delivery_fees(destination, message)
        }
    }
    impl xcm_runtime_apis::conversions::LocationToAccountApi<Block, AccountId> for Runtime {
        fn convert_location(location: VersionedLocation) -> Result<
            AccountId,
            xcm_runtime_apis::conversions::Error
        > {
            xcm_runtime_apis::conversions::LocationToAccountHelper::<
                AccountId,
                xcm_config::LocationConverter,
            >::convert_location(location)
        }
    }
    impl sp_api::Metadata<Block> for Runtime {
        fn metadata() -> OpaqueMetadata {
            OpaqueMetadata::new(Runtime::metadata().into())
        }
        fn metadata_at_version(version: u32) -> Option<OpaqueMetadata> {
            Runtime::metadata_at_version(version)
        }
        fn metadata_versions() -> sp_std::vec::Vec<u32> {
            Runtime::metadata_versions()
        }
    }
    impl block_builder_api::BlockBuilder<Block> for Runtime {
        fn apply_extrinsic(extrinsic: <Block as BlockT>::Extrinsic) -> ApplyExtrinsicResult {
            Executive::apply_extrinsic(extrinsic)
        }
        fn finalize_block() -> <Block as BlockT>::Header {
            Executive::finalize_block()
        }
        fn inherent_extrinsics(data: inherents::InherentData) -> Vec<<Block as BlockT>::Extrinsic> {
            data.create_extrinsics()
        }
        fn check_inherents(
            block: Block,
            data: inherents::InherentData,
        ) -> inherents::CheckInherentsResult {
            data.check_extrinsics(&block)
        }
    }
    impl tx_pool_api::runtime_api::TaggedTransactionQueue<Block> for Runtime {
        fn validate_transaction(
            source: TransactionSource,
            tx: <Block as BlockT>::Extrinsic,
            block_hash: <Block as BlockT>::Hash,
        ) -> TransactionValidity {
            Executive::validate_transaction(source, tx, block_hash)
        }
    }
    impl offchain_primitives::OffchainWorkerApi<Block> for Runtime {
        fn offchain_worker(header: &<Block as BlockT>::Header) {
            Executive::offchain_worker(header)
        }
    }
    #[api_version(11)]
    impl primitives::runtime_api::ParachainHost<Block> for Runtime {
        fn validators() -> Vec<ValidatorId> {
            parachains_runtime_api_impl::validators::<Runtime>()
        }
        fn validator_groups() -> (Vec<Vec<ValidatorIndex>>, GroupRotationInfo<BlockNumber>) {
            parachains_runtime_api_impl::validator_groups::<Runtime>()
        }
        fn availability_cores() -> Vec<CoreState<Hash, BlockNumber>> {
            parachains_runtime_api_impl::availability_cores::<Runtime>()
        }
        fn persisted_validation_data(para_id: ParaId, assumption: OccupiedCoreAssumption)
            -> Option<PersistedValidationData<Hash, BlockNumber>> {
            parachains_runtime_api_impl::persisted_validation_data::<Runtime>(para_id, assumption)
        }
        fn assumed_validation_data(
            para_id: ParaId,
            expected_persisted_validation_data_hash: Hash,
        ) -> Option<(PersistedValidationData<Hash, BlockNumber>, ValidationCodeHash)> {
            parachains_runtime_api_impl::assumed_validation_data::<Runtime>(
                para_id,
                expected_persisted_validation_data_hash,
            )
        }
        fn check_validation_outputs(
            para_id: ParaId,
            outputs: primitives::CandidateCommitments,
        ) -> bool {
            parachains_runtime_api_impl::check_validation_outputs::<Runtime>(para_id, outputs)
        }
        fn session_index_for_child() -> SessionIndex {
            parachains_runtime_api_impl::session_index_for_child::<Runtime>()
        }
        fn validation_code(para_id: ParaId, assumption: OccupiedCoreAssumption)
            -> Option<ValidationCode> {
            parachains_runtime_api_impl::validation_code::<Runtime>(para_id, assumption)
        }
        fn candidate_pending_availability(para_id: ParaId) -> Option<CommittedCandidateReceiptV2<Hash>> {
            #[allow(deprecated)]
            parachains_runtime_api_impl::candidate_pending_availability::<Runtime>(para_id)
        }
        fn candidate_events() -> Vec<CandidateEvent<Hash>> {
            parachains_runtime_api_impl::candidate_events::<Runtime, _>(|ev| {
                match ev {
                    RuntimeEvent::ParaInclusion(ev) => {
                        Some(ev)
                    }
                    _ => None,
                }
            })
        }
        fn session_info(index: SessionIndex) -> Option<SessionInfo> {
            parachains_runtime_api_impl::session_info::<Runtime>(index)
        }
        fn session_executor_params(session_index: SessionIndex) -> Option<ExecutorParams> {
            parachains_runtime_api_impl::session_executor_params::<Runtime>(session_index)
        }
100
        fn dmq_contents(recipient: ParaId) -> Vec<InboundDownwardMessage<BlockNumber>> {
100
            parachains_runtime_api_impl::dmq_contents::<Runtime>(recipient)
100
        }
        fn inbound_hrmp_channels_contents(
            recipient: ParaId
        ) -> BTreeMap<ParaId, Vec<InboundHrmpMessage<BlockNumber>>> {
            parachains_runtime_api_impl::inbound_hrmp_channels_contents::<Runtime>(recipient)
        }
        fn validation_code_by_hash(hash: ValidationCodeHash) -> Option<ValidationCode> {
            parachains_runtime_api_impl::validation_code_by_hash::<Runtime>(hash)
        }
        fn on_chain_votes() -> Option<ScrapedOnChainVotes<Hash>> {
            parachains_runtime_api_impl::on_chain_votes::<Runtime>()
        }
        fn submit_pvf_check_statement(
            stmt: primitives::PvfCheckStatement,
            signature: primitives::ValidatorSignature
        ) {
            parachains_runtime_api_impl::submit_pvf_check_statement::<Runtime>(stmt, signature)
        }
        fn pvfs_require_precheck() -> Vec<ValidationCodeHash> {
            parachains_runtime_api_impl::pvfs_require_precheck::<Runtime>()
        }
        fn validation_code_hash(para_id: ParaId, assumption: OccupiedCoreAssumption)
            -> Option<ValidationCodeHash>
        {
            parachains_runtime_api_impl::validation_code_hash::<Runtime>(para_id, assumption)
        }
        fn disputes() -> Vec<(SessionIndex, CandidateHash, DisputeState<BlockNumber>)> {
            parachains_runtime_api_impl::get_session_disputes::<Runtime>()
        }
        fn unapplied_slashes(
        ) -> Vec<(SessionIndex, CandidateHash, slashing::PendingSlashes)> {
            parachains_runtime_api_impl::unapplied_slashes::<Runtime>()
        }
        fn key_ownership_proof(
            validator_id: ValidatorId,
        ) -> Option<slashing::OpaqueKeyOwnershipProof> {
            use parity_scale_codec::Encode;
            Historical::prove((PARACHAIN_KEY_TYPE_ID, validator_id))
                .map(|p| p.encode())
                .map(slashing::OpaqueKeyOwnershipProof::new)
        }
        fn submit_report_dispute_lost(
            dispute_proof: slashing::DisputeProof,
            key_ownership_proof: slashing::OpaqueKeyOwnershipProof,
        ) -> Option<()> {
            parachains_runtime_api_impl::submit_unsigned_slashing_report::<Runtime>(
                dispute_proof,
                key_ownership_proof,
            )
        }
        fn minimum_backing_votes() -> u32 {
            parachains_runtime_api_impl::minimum_backing_votes::<Runtime>()
        }
        fn para_backing_state(para_id: ParaId) -> Option<primitives::vstaging::async_backing::BackingState> {
            parachains_runtime_api_impl::backing_state::<Runtime>(para_id)
        }
        fn async_backing_params() -> primitives::AsyncBackingParams {
            parachains_runtime_api_impl::async_backing_params::<Runtime>()
        }
        fn approval_voting_params() -> ApprovalVotingParams {
            parachains_runtime_api_impl::approval_voting_params::<Runtime>()
        }
        fn disabled_validators() -> Vec<ValidatorIndex> {
            parachains_runtime_api_impl::disabled_validators::<Runtime>()
        }
        fn node_features() -> NodeFeatures {
            parachains_runtime_api_impl::node_features::<Runtime>()
        }
        fn claim_queue() -> BTreeMap<CoreIndex, VecDeque<ParaId>> {
            parachains_runtime_api_impl::claim_queue::<Runtime>()
        }
4
        fn candidates_pending_availability(para_id: ParaId) -> Vec<CommittedCandidateReceiptV2<Hash>> {
4
            parachains_runtime_api_impl::candidates_pending_availability::<Runtime>(para_id)
4
        }
    }
    #[api_version(5)]
    impl beefy_primitives::BeefyApi<Block, BeefyId> for Runtime {
        fn beefy_genesis() -> Option<BlockNumber> {
            pallet_beefy::GenesisBlock::<Runtime>::get()
        }
        fn validator_set() -> Option<beefy_primitives::ValidatorSet<BeefyId>> {
            Beefy::validator_set()
        }
        fn submit_report_double_voting_unsigned_extrinsic(
            equivocation_proof: beefy_primitives::DoubleVotingProof<
                BlockNumber,
                BeefyId,
                BeefySignature,
            >,
            key_owner_proof: beefy_primitives::OpaqueKeyOwnershipProof,
        ) -> Option<()> {
            let key_owner_proof = key_owner_proof.decode()?;
            Beefy::submit_unsigned_double_voting_report(
                equivocation_proof,
                key_owner_proof,
            )
        }
        fn submit_report_fork_voting_unsigned_extrinsic(
            equivocation_proof:
                beefy_primitives::ForkVotingProof<
                    <Block as BlockT>::Header,
                    BeefyId,
                    sp_runtime::OpaqueValue
                >,
            key_owner_proof: beefy_primitives::OpaqueKeyOwnershipProof,
        ) -> Option<()> {
            Beefy::submit_unsigned_fork_voting_report(
                equivocation_proof.try_into()?,
                key_owner_proof.decode()?,
            )
        }
        fn submit_report_future_block_voting_unsigned_extrinsic(
            equivocation_proof: beefy_primitives::FutureBlockVotingProof<BlockNumber, BeefyId>,
            key_owner_proof: beefy_primitives::OpaqueKeyOwnershipProof,
        ) -> Option<()> {
            Beefy::submit_unsigned_future_block_voting_report(
                equivocation_proof,
                key_owner_proof.decode()?,
            )
        }
        fn generate_key_ownership_proof(
            _set_id: beefy_primitives::ValidatorSetId,
            authority_id: BeefyId,
        ) -> Option<beefy_primitives::OpaqueKeyOwnershipProof> {
            Historical::prove((beefy_primitives::KEY_TYPE, authority_id))
                .map(|p| p.encode())
                .map(beefy_primitives::OpaqueKeyOwnershipProof::new)
        }
        fn generate_ancestry_proof(
            prev_block_number: BlockNumber,
            best_known_block_number: Option<BlockNumber>,
        ) -> Option<sp_runtime::OpaqueValue> {
            use beefy_primitives::AncestryHelper;
            BeefyMmrLeaf::generate_proof(prev_block_number, best_known_block_number)
                .map(|p| p.encode())
                .map(sp_runtime::OpaqueValue::new)
        }
    }
    #[api_version(2)]
    impl mmr::MmrApi<Block, mmr::Hash, BlockNumber> for Runtime {
        fn mmr_root() -> Result<mmr::Hash, mmr::Error> {
            Ok(pallet_mmr::RootHash::<Runtime>::get())
        }
        fn mmr_leaf_count() -> Result<mmr::LeafIndex, mmr::Error> {
            Ok(pallet_mmr::NumberOfLeaves::<Runtime>::get())
        }
        fn generate_proof(
            block_numbers: Vec<BlockNumber>,
            best_known_block_number: Option<BlockNumber>,
        ) -> Result<(Vec<mmr::EncodableOpaqueLeaf>, mmr::LeafProof<mmr::Hash>), mmr::Error> {
            Mmr::generate_proof(block_numbers, best_known_block_number).map(
                |(leaves, proof)| {
                    (
                        leaves
                            .into_iter()
                            .map(|leaf| mmr::EncodableOpaqueLeaf::from_leaf(&leaf))
                            .collect(),
                        proof,
                    )
                },
            )
        }
        fn verify_proof(leaves: Vec<mmr::EncodableOpaqueLeaf>, proof: mmr::LeafProof<mmr::Hash>)
            -> Result<(), mmr::Error>
        {
            let leaves = leaves.into_iter().map(|leaf|
                leaf.into_opaque_leaf()
                .try_decode()
                .ok_or(mmr::Error::Verify)).collect::<Result<Vec<mmr::Leaf>, mmr::Error>>()?;
            Mmr::verify_leaves(leaves, proof)
        }
        fn verify_proof_stateless(
            root: mmr::Hash,
            leaves: Vec<mmr::EncodableOpaqueLeaf>,
            proof: mmr::LeafProof<mmr::Hash>
        ) -> Result<(), mmr::Error> {
            let nodes = leaves.into_iter().map(|leaf|mmr::DataOrHash::Data(leaf.into_opaque_leaf())).collect();
            pallet_mmr::verify_leaves_proof::<mmr::Hashing, _>(root, nodes, proof)
        }
    }
    impl fg_primitives::GrandpaApi<Block> for Runtime {
        fn grandpa_authorities() -> Vec<(GrandpaId, u64)> {
            Grandpa::grandpa_authorities()
        }
        fn current_set_id() -> fg_primitives::SetId {
            Grandpa::current_set_id()
        }
        fn submit_report_equivocation_unsigned_extrinsic(
            equivocation_proof: fg_primitives::EquivocationProof<
                <Block as BlockT>::Hash,
                sp_runtime::traits::NumberFor<Block>,
            >,
            key_owner_proof: fg_primitives::OpaqueKeyOwnershipProof,
        ) -> Option<()> {
            let key_owner_proof = key_owner_proof.decode()?;
            Grandpa::submit_unsigned_equivocation_report(
                equivocation_proof,
                key_owner_proof,
            )
        }
        fn generate_key_ownership_proof(
            _set_id: fg_primitives::SetId,
            authority_id: fg_primitives::AuthorityId,
        ) -> Option<fg_primitives::OpaqueKeyOwnershipProof> {
            use parity_scale_codec::Encode;
            Historical::prove((fg_primitives::KEY_TYPE, authority_id))
                .map(|p| p.encode())
                .map(fg_primitives::OpaqueKeyOwnershipProof::new)
        }
    }
    impl babe_primitives::BabeApi<Block> for Runtime {
        fn configuration() -> babe_primitives::BabeConfiguration {
            let epoch_config = Babe::epoch_config().unwrap_or(BABE_GENESIS_EPOCH_CONFIG);
            babe_primitives::BabeConfiguration {
                slot_duration: Babe::slot_duration(),
                epoch_length: EpochDurationInBlocks::get().into(),
                c: epoch_config.c,
                authorities: Babe::authorities().to_vec(),
                randomness: Babe::randomness(),
                allowed_slots: epoch_config.allowed_slots,
            }
        }
        fn current_epoch_start() -> babe_primitives::Slot {
            Babe::current_epoch_start()
        }
        fn current_epoch() -> babe_primitives::Epoch {
            Babe::current_epoch()
        }
        fn next_epoch() -> babe_primitives::Epoch {
            Babe::next_epoch()
        }
        fn generate_key_ownership_proof(
            _slot: babe_primitives::Slot,
            authority_id: babe_primitives::AuthorityId,
        ) -> Option<babe_primitives::OpaqueKeyOwnershipProof> {
            use parity_scale_codec::Encode;
            Historical::prove((babe_primitives::KEY_TYPE, authority_id))
                .map(|p| p.encode())
                .map(babe_primitives::OpaqueKeyOwnershipProof::new)
        }
        fn submit_report_equivocation_unsigned_extrinsic(
            equivocation_proof: babe_primitives::EquivocationProof<<Block as BlockT>::Header>,
            key_owner_proof: babe_primitives::OpaqueKeyOwnershipProof,
        ) -> Option<()> {
            let key_owner_proof = key_owner_proof.decode()?;
            Babe::submit_unsigned_equivocation_report(
                equivocation_proof,
                key_owner_proof,
            )
        }
    }
    impl authority_discovery_primitives::AuthorityDiscoveryApi<Block> for Runtime {
        fn authorities() -> Vec<AuthorityDiscoveryId> {
            parachains_runtime_api_impl::relevant_authority_ids::<Runtime>()
        }
    }
    impl sp_session::SessionKeys<Block> for Runtime {
        fn generate_session_keys(seed: Option<Vec<u8>>) -> Vec<u8> {
            SessionKeys::generate(seed)
        }
        fn decode_session_keys(
            encoded: Vec<u8>,
        ) -> Option<Vec<(Vec<u8>, sp_core::crypto::KeyTypeId)>> {
            SessionKeys::decode_into_raw_public_keys(&encoded)
        }
    }
    impl frame_system_rpc_runtime_api::AccountNonceApi<Block, AccountId, Nonce> for Runtime {
        fn account_nonce(account: AccountId) -> Nonce {
            System::account_nonce(account)
        }
    }
    impl pallet_transaction_payment_rpc_runtime_api::TransactionPaymentApi<
        Block,
        Balance,
    > for Runtime {
        fn query_info(uxt: <Block as BlockT>::Extrinsic, len: u32) -> RuntimeDispatchInfo<Balance> {
            TransactionPayment::query_info(uxt, len)
        }
        fn query_fee_details(uxt: <Block as BlockT>::Extrinsic, len: u32) -> FeeDetails<Balance> {
            TransactionPayment::query_fee_details(uxt, len)
        }
        fn query_weight_to_fee(weight: Weight) -> Balance {
            TransactionPayment::weight_to_fee(weight)
        }
        fn query_length_to_fee(length: u32) -> Balance {
            TransactionPayment::length_to_fee(length)
        }
    }
    impl pallet_transaction_payment_rpc_runtime_api::TransactionPaymentCallApi<Block, Balance, RuntimeCall>
        for Runtime
    {
        fn query_call_info(call: RuntimeCall, len: u32) -> RuntimeDispatchInfo<Balance> {
            TransactionPayment::query_call_info(call, len)
        }
        fn query_call_fee_details(call: RuntimeCall, len: u32) -> FeeDetails<Balance> {
            TransactionPayment::query_call_fee_details(call, len)
        }
        fn query_weight_to_fee(weight: Weight) -> Balance {
            TransactionPayment::weight_to_fee(weight)
        }
        fn query_length_to_fee(length: u32) -> Balance {
            TransactionPayment::length_to_fee(length)
        }
    }
    impl pallet_beefy_mmr::BeefyMmrApi<Block, Hash> for RuntimeApi {
        fn authority_set_proof() -> beefy_primitives::mmr::BeefyAuthoritySet<Hash> {
            BeefyMmrLeaf::authority_set_proof()
        }
        fn next_authority_set_proof() -> beefy_primitives::mmr::BeefyNextAuthoritySet<Hash> {
            BeefyMmrLeaf::next_authority_set_proof()
        }
    }
    #[cfg(feature = "try-runtime")]
    impl frame_try_runtime::TryRuntime<Block> for Runtime {
        fn on_runtime_upgrade(checks: frame_try_runtime::UpgradeCheckSelect) -> (Weight, Weight) {
            log::info!("try-runtime::on_runtime_upgrade starlight.");
            let weight = Executive::try_runtime_upgrade(checks).unwrap();
            (weight, BlockWeights::get().max_block)
        }
        fn execute_block(
            block: Block,
            state_root_check: bool,
            signature_check: bool,
            select: frame_try_runtime::TryStateSelect,
        ) -> Weight {
            // NOTE: intentional unwrap: we don't want to propagate the error backwards, and want to
            // have a backtrace here.
            Executive::try_execute_block(block, state_root_check, signature_check, select).unwrap()
        }
    }
    impl pallet_registrar_runtime_api::RegistrarApi<Block, ParaId> for Runtime {
        /// Return the registered para ids
10
        fn registered_paras() -> Vec<ParaId> {
10
            // We should return the container-chains for the session in which we are kicking in
10
            // We could potentially predict whether the next block will yield a session change as in dancebox but this
10
            // is innecesary: the Starlight blocks are being produced by validators, and therefore it should never
10
            // stall because of any collator-rotation. Therefore it suffices for collators to predict the chain in
10
            // which they have to collate after the session-change block.
10
            let session_index = Session::current_index();
10
            let container_chains = ContainerRegistrar::session_container_chains(session_index);
10
            let mut para_ids = vec![];
10
            para_ids.extend(container_chains.parachains);
10
            para_ids.extend(container_chains.parathreads.into_iter().map(|(para_id, _)| para_id));
10

            
10
            para_ids
10
        }
        /// Fetch genesis data for this para id
18
        fn genesis_data(para_id: ParaId) -> Option<ContainerChainGenesisData> {
18
            ContainerRegistrar::para_genesis_data(para_id)
18
        }
        /// Fetch boot_nodes for this para id
        fn boot_nodes(para_id: ParaId) -> Vec<Vec<u8>> {
            DataPreservers::assignments_profiles(para_id)
                .filter(|profile| profile.mode == pallet_data_preservers::ProfileMode::Bootnode)
                .map(|profile| profile.url.into())
                .collect()
        }
    }
    impl pallet_registrar_runtime_api::OnDemandBlockProductionApi<Block, ParaId, Slot> for Runtime {
        /// Returns slot frequency for particular para thread. Slot frequency specifies amount of slot
        /// need to be passed between two parathread blocks. It is expressed as `(min, max)` pair where `min`
        /// indicates amount of slot must pass before we produce another block and `max` indicates amount of
        /// blocks before this parathread must produce the block.
        ///
        /// Simply put, parathread must produce a block after `min`  but before `(min+max)` slots.
        ///
        /// # Returns
        ///
        /// * `Some(slot_frequency)`.
        /// * `None` if the `para_id` is not a parathread.
        fn parathread_slot_frequency(para_id: ParaId) -> Option<SlotFrequency> {
            ContainerRegistrar::parathread_params(para_id).map(|params| {
                params.slot_frequency
            })
        }
    }
    impl pallet_author_noting_runtime_api::AuthorNotingApi<Block, AccountId, BlockNumber, ParaId> for Runtime
        where
        AccountId: parity_scale_codec::Codec,
        BlockNumber: parity_scale_codec::Codec,
        ParaId: parity_scale_codec::Codec,
    {
1
        fn latest_block_number(para_id: ParaId) -> Option<BlockNumber> {
1
            AuthorNoting::latest_author(para_id).map(|info| info.block_number)
1
        }
1
        fn latest_author(para_id: ParaId) -> Option<AccountId> {
1
            AuthorNoting::latest_author(para_id).map(|info| info.author)
1
        }
    }
    impl pallet_external_validators_rewards_runtime_api::ExternalValidatorsRewardsApi<Block, AccountId, EraIndex> for Runtime
        where
        EraIndex: parity_scale_codec::Codec,
    {
        fn generate_rewards_merkle_proof(account_id: AccountId, era_index: EraIndex) -> Option<MerkleProof> {
            ExternalValidatorsRewards::generate_rewards_merkle_proof(account_id, era_index)
        }
        fn verify_rewards_merkle_proof(merkle_proof: MerkleProof) -> bool {
            ExternalValidatorsRewards::verify_rewards_merkle_proof(merkle_proof)
        }
    }
    impl dp_consensus::TanssiAuthorityAssignmentApi<Block, NimbusId> for Runtime {
        /// Return the current authorities assigned to a given paraId
        fn para_id_authorities(para_id: ParaId) -> Option<Vec<NimbusId>> {
            let session_index = Session::current_index();
            let assigned_authorities = TanssiAuthorityAssignment::collator_container_chain(session_index)?;
            assigned_authorities.container_chains.get(&para_id).cloned()
        }
        /// Return the paraId assigned to a given authority
        fn check_para_id_assignment(authority: NimbusId) -> Option<ParaId> {
            let session_index = Session::current_index();
            let assigned_authorities = TanssiAuthorityAssignment::collator_container_chain(session_index)?;
            // This self_para_id is used to detect assignments to orchestrator, in this runtime the
            // orchestrator will always be empty so we can set it to any value
            let self_para_id = 0u32.into();
            assigned_authorities.para_id_of(&authority, self_para_id)
        }
        /// Return the paraId assigned to a given authority on the next session.
        /// On session boundary this returns the same as `check_para_id_assignment`.
        fn check_para_id_assignment_next_session(authority: NimbusId) -> Option<ParaId> {
            let session_index = Session::current_index() + 1;
            let assigned_authorities = TanssiAuthorityAssignment::collator_container_chain(session_index)?;
            // This self_para_id is used to detect assignments to orchestrator, in this runtime the
            // orchestrator will always be empty so we can set it to any value
            let self_para_id = 0u32.into();
            assigned_authorities.para_id_of(&authority, self_para_id)
        }
    }
    impl pallet_services_payment_runtime_api::ServicesPaymentApi<Block, Balance, ParaId> for Runtime {
        fn block_cost(para_id: ParaId) -> Balance {
            let (block_production_costs, _) = <Runtime as pallet_services_payment::Config>::ProvideBlockProductionCost::block_cost(&para_id);
            block_production_costs
        }
        fn collator_assignment_cost(para_id: ParaId) -> Balance {
            let (collator_assignment_costs, _) = <Runtime as pallet_services_payment::Config>::ProvideCollatorAssignmentCost::collator_assignment_cost(&para_id);
            collator_assignment_costs
        }
    }
    impl snowbridge_outbound_queue_runtime_api::OutboundQueueApi<Block, Balance> for Runtime {
        fn prove_message(leaf_index: u64) -> Option<MerkleProof> {
            snowbridge_pallet_outbound_queue::api::prove_message::<Runtime>(leaf_index)
        }
        fn calculate_fee(command: Command, parameters: Option<PricingParameters<Balance>>) -> Fee<Balance> {
            snowbridge_pallet_outbound_queue::api::calculate_fee::<Runtime>(command, parameters)
        }
    }
    #[cfg(feature = "runtime-benchmarks")]
    impl frame_benchmarking::Benchmark<Block> for Runtime {
        fn benchmark_metadata(extra: bool) -> (
            Vec<frame_benchmarking::BenchmarkList>,
            Vec<frame_support::traits::StorageInfo>,
        ) {
            use frame_benchmarking::{Benchmarking, BenchmarkList};
            use frame_support::traits::StorageInfoTrait;
            use frame_system_benchmarking::Pallet as SystemBench;
            use frame_benchmarking::baseline::Pallet as Baseline;
            use pallet_xcm::benchmarking::Pallet as PalletXcmExtrinsicsBenchmark;
            let mut list = Vec::<BenchmarkList>::new();
            list_benchmarks!(list, extra);
            let storage_info = AllPalletsWithSystem::storage_info();
            (list, storage_info)
        }
        fn dispatch_benchmark(
            config: frame_benchmarking::BenchmarkConfig,
        ) -> Result<
            Vec<frame_benchmarking::BenchmarkBatch>,
            alloc::string::String,
        > {
            use frame_support::traits::WhitelistedStorageKeys;
            use frame_benchmarking::{Benchmarking, BenchmarkBatch, BenchmarkError};
            use frame_system_benchmarking::Pallet as SystemBench;
            use frame_benchmarking::baseline::Pallet as Baseline;
            use pallet_xcm::benchmarking::Pallet as PalletXcmExtrinsicsBenchmark;
            use sp_storage::TrackedStorageKey;
            use xcm::latest::prelude::*;
            use xcm_config::{
                AssetHub, LocalCheckAccount, LocationConverter, TokenLocation, XcmConfig,
            };
            parameter_types! {
                pub ExistentialDepositAsset: Option<Asset> = Some((
                    TokenLocation::get(),
                    ExistentialDeposit::get()
                ).into());
                pub AssetHubParaId: ParaId = starlight_runtime_constants::system_parachain::ASSET_HUB_ID.into();
                pub const RandomParaId: ParaId = ParaId::new(43211234);
            }
            impl frame_system_benchmarking::Config for Runtime {}
            impl frame_benchmarking::baseline::Config for Runtime {}
            impl pallet_xcm::benchmarking::Config for Runtime {
                type DeliveryHelper = (
                    runtime_common::xcm_sender::ToParachainDeliveryHelper<
                        XcmConfig,
                        ExistentialDepositAsset,
                        xcm_config::PriceForChildParachainDelivery,
                        AssetHubParaId,
                        (),
                    >,
                    runtime_common::xcm_sender::ToParachainDeliveryHelper<
                        XcmConfig,
                        ExistentialDepositAsset,
                        xcm_config::PriceForChildParachainDelivery,
                        RandomParaId,
                        (),
                    >
                );
                fn reachable_dest() -> Option<Location> {
                    Some(crate::xcm_config::AssetHub::get())
                }
                fn teleportable_asset_and_dest() -> Option<(Asset, Location)> {
                    // Relay/native token can be teleported to/from AH.
                    Some((
                        Asset {
                            fun: Fungible(ExistentialDeposit::get()),
                            id: AssetId(Here.into())
                        },
                        crate::xcm_config::AssetHub::get(),
                    ))
                }
                fn reserve_transferable_asset_and_dest() -> Option<(Asset, Location)> {
                    // Relay can reserve transfer native token to some random parachain.
                    Some((
                        Asset {
                            fun: Fungible(ExistentialDeposit::get()),
                            id: AssetId(Here.into())
                        },
                        Parachain(RandomParaId::get().into()).into(),
                    ))
                }
                fn set_up_complex_asset_transfer(
                ) -> Option<(Assets, u32, Location, Box<dyn FnOnce()>)> {
                    // Relay supports only native token, either reserve transfer it to non-system parachains,
                    // or teleport it to system parachain. Use the teleport case for benchmarking as it's
                    // slightly heavier.
                    // Relay/native token can be teleported to/from AH.
                    let native_location = Here.into();
                    let dest = crate::xcm_config::AssetHub::get();
                    pallet_xcm::benchmarking::helpers::native_teleport_as_asset_transfer::<Runtime>(
                        native_location,
                        dest
                    )
                }
                fn get_asset() -> Asset {
                    Asset {
                        id: AssetId(Location::here()),
                        fun: Fungible(ExistentialDeposit::get()),
                    }
                }
            }
            impl pallet_xcm_benchmarks::Config for Runtime {
                type XcmConfig = XcmConfig;
                type AccountIdConverter = LocationConverter;
                type DeliveryHelper = runtime_common::xcm_sender::ToParachainDeliveryHelper<
                    XcmConfig,
                    ExistentialDepositAsset,
                    xcm_config::PriceForChildParachainDelivery,
                    AssetHubParaId,
                    (),
                >;
                fn valid_destination() -> Result<Location, BenchmarkError> {
                    Ok(AssetHub::get())
                }
                fn worst_case_holding(_depositable_count: u32) -> Assets {
                    // Starlight only knows about STAR
                    vec![Asset{
                        id: AssetId(TokenLocation::get()),
                        fun: Fungible(1_000_000 * UNITS),
                    }].into()
                }
            }
            parameter_types! {
                pub TrustedTeleporter: Option<(Location, Asset)> = Some((
                    AssetHub::get(),
                    Asset { fun: Fungible(1 * UNITS), id: AssetId(TokenLocation::get()) },
                ));
                pub TrustedReserve: Option<(Location, Asset)> = None;
            }
            impl pallet_xcm_benchmarks::fungible::Config for Runtime {
                type TransactAsset = Balances;
                type CheckedAccount = LocalCheckAccount;
                type TrustedTeleporter = TrustedTeleporter;
                type TrustedReserve = TrustedReserve;
                fn get_asset() -> Asset {
                    Asset {
                        id: AssetId(TokenLocation::get()),
                        fun: Fungible(1 * UNITS),
                    }
                }
            }
            impl pallet_xcm_benchmarks::generic::Config for Runtime {
                type TransactAsset = Balances;
                type RuntimeCall = RuntimeCall;
                fn worst_case_response() -> (u64, Response) {
                    (0u64, Response::Version(Default::default()))
                }
                fn worst_case_asset_exchange() -> Result<(Assets, Assets), BenchmarkError> {
                    // Starlight doesn't support asset exchanges
                    Err(BenchmarkError::Skip)
                }
                fn universal_alias() -> Result<(Location, Junction), BenchmarkError> {
                    // The XCM executor of Starlight doesn't have a configured `UniversalAliases`
                    Err(BenchmarkError::Skip)
                }
                fn transact_origin_and_runtime_call() -> Result<(Location, RuntimeCall), BenchmarkError> {
                    Ok((AssetHub::get(), frame_system::Call::remark_with_event { remark: vec![] }.into()))
                }
                fn subscribe_origin() -> Result<Location, BenchmarkError> {
                    Ok(AssetHub::get())
                }
                fn claimable_asset() -> Result<(Location, Location, Assets), BenchmarkError> {
                    let origin = AssetHub::get();
                    let assets: Assets = (AssetId(TokenLocation::get()), 1_000 * UNITS).into();
                    let ticket = Location { parents: 0, interior: Here };
                    Ok((origin, ticket, assets))
                }
                fn fee_asset() -> Result<Asset, BenchmarkError> {
                    Ok(Asset {
                        id: AssetId(TokenLocation::get()),
                        fun: Fungible(1_000_000 * UNITS),
                    })
                }
                fn unlockable_asset() -> Result<(Location, Location, Asset), BenchmarkError> {
                    // Starlight doesn't support asset locking
                    Err(BenchmarkError::Skip)
                }
                fn export_message_origin_and_destination(
                ) -> Result<(Location, NetworkId, InteriorLocation), BenchmarkError> {
                    // Starlight doesn't support exporting messages
                    Err(BenchmarkError::Skip)
                }
                fn alias_origin() -> Result<(Location, Location), BenchmarkError> {
                    // The XCM executor of Starlight doesn't have a configured `Aliasers`
                    Err(BenchmarkError::Skip)
                }
            }
            pub struct SessionBenchValidators;
            impl pallet_alt_benchmarks::bench_parachains_slashing::Validators<AccountId> for SessionBenchValidators {
                /// Sets the validators to properly run a benchmark. Should take care of everything that
                /// will make pallet_session use those validators, such as them having a balance.
                fn set_validators(validators: &[AccountId]) {
                    use frame_support::traits::fungible::Mutate;
                    use tp_traits::ExternalIndexProvider;
                    ExternalValidators::set_external_validators_inner(
                        validators.to_vec(),
                        ExternalValidators::get_external_index()
                    ).expect("to set validators");
                    for v in validators {
                        Balances::set_balance(v, EXISTENTIAL_DEPOSIT);
                    }
                }
            }
            impl pallet_alt_benchmarks::bench_parachains_slashing::Config for Runtime {
                type Validators = SessionBenchValidators;
            }
            impl cumulus_pallet_session_benchmarking::Config for Runtime { }
            let mut whitelist: Vec<TrackedStorageKey> = AllPalletsWithSystem::whitelisted_storage_keys();
            let treasury_key = frame_system::Account::<Runtime>::hashed_key_for(Treasury::account_id());
            whitelist.push(treasury_key.to_vec().into());
            let mut batches = Vec::<BenchmarkBatch>::new();
            let params = (&config, &whitelist);
            add_benchmarks!(params, batches);
            Ok(batches)
        }
    }
    impl sp_genesis_builder::GenesisBuilder<Block> for Runtime {
        fn build_state(config: Vec<u8>) -> sp_genesis_builder::Result {
            build_state::<RuntimeGenesisConfig>(config)
        }
        fn get_preset(id: &Option<PresetId>) -> Option<Vec<u8>> {
            get_preset::<RuntimeGenesisConfig>(id, &genesis_config_presets::get_preset)
        }
        fn preset_names() -> Vec<PresetId> {
            vec![
                PresetId::from("local_testnet"),
                PresetId::from("development"),
                PresetId::from("staging_testnet"),
                PresetId::from("wococo_local_testnet"),
                PresetId::from("versi_local_testnet"),
            ]
        }
    }
}
pub struct OwnApplySession;
impl tanssi_initializer::ApplyNewSession<Runtime> for OwnApplySession {
583
    fn apply_new_session(
583
        _changed: bool,
583
        session_index: u32,
583
        _all_validators: Vec<(AccountId, nimbus_primitives::NimbusId)>,
583
        _queued: Vec<(AccountId, nimbus_primitives::NimbusId)>,
583
    ) {
583
        // Order is same as in tanssi
583
        // 1.
583
        // We first initialize Configuration
583
        CollatorConfiguration::initializer_on_new_session(&session_index);
583
        // 2. Second, registrar
583
        ContainerRegistrar::initializer_on_new_session(&session_index);
583

            
583
        let invulnerables = TanssiInvulnerables::invulnerables().to_vec();
583
        let candidates_staking =
583
            pallet_pooled_staking::SortedEligibleCandidates::<Runtime>::get().to_vec();
583
        // Max number of collators is set in pallet_configuration
583
        let target_session_index = session_index.saturating_add(1);
583
        let max_collators = <CollatorConfiguration as GetHostConfiguration<u32>>::max_collators(
583
            target_session_index,
583
        );
583
        let next_collators: Vec<_> = invulnerables
583
            .iter()
583
            .cloned()
583
            .chain(candidates_staking.into_iter().filter_map(|elig| {
26
                let cand = elig.candidate;
26
                if invulnerables.contains(&cand) {
                    // If a candidate is both in pallet_invulnerables and pallet_staking, do not count it twice
26
                    None
                } else {
                    Some(cand)
                }
583
            }))
583
            .take(max_collators as usize)
583
            .collect();
583

            
583
        // Queue next session keys.
583
        let queued_amalgamated = next_collators
583
            .into_iter()
885
            .filter_map(|a| {
805
                let k = pallet_session::NextKeys::<Runtime>::get(&a)?;
805
                Some((a, k.nimbus))
885
            })
583
            .collect::<Vec<_>>();
583

            
885
        let next_collators_accounts = queued_amalgamated.iter().map(|(a, _)| a.clone()).collect();
583

            
583
        // 3. AuthorityMapping
583
        if session_index.is_zero() {
247
            // On the genesis sesion index we need to store current as well
247
            TanssiAuthorityMapping::initializer_on_new_session(&session_index, &queued_amalgamated);
416
        }
        // Otherwise we always store one sessio ahead
        // IMPORTANT: this changes with respect to dancebox/flashbox because here we dont have
        // the current collators and their keys.
        // In contrast, we have the keys for the validators only
583
        TanssiAuthorityMapping::initializer_on_new_session(
583
            &(session_index + 1),
583
            &queued_amalgamated,
583
        );
583

            
583
        // 4. CollatorAssignment
583
        // Unlike in tanssi, where the input to this function are the correct
583
        // queued keys & collators, here we get the input refers to the validators
583
        // and not the collators. Therefore we need to do a similar thing that
583
        // pallet-session does but in this function
583
        // This is, get the collators, fetch their respective keys, and queue the
583
        // assignment
583

            
583
        // CollatorAssignment
583
        let assignments = TanssiCollatorAssignment::initializer_on_new_session(
583
            &session_index,
583
            next_collators_accounts,
583
        );
583

            
583
        // 5. AuthorityAssignment
583
        let queued_id_to_nimbus_map = queued_amalgamated.iter().cloned().collect();
583
        TanssiAuthorityAssignment::initializer_on_new_session(
583
            &session_index,
583
            &queued_id_to_nimbus_map,
583
            &assignments.next_assignment,
583
        );
583
    }
336
    fn on_before_session_ending() {}
}
parameter_types! {
    pub MockParaId :ParaId = 0u32.into();
}
impl tanssi_initializer::Config for Runtime {
    type SessionIndex = u32;
    /// The identifier type for an authority.
    type AuthorityId = nimbus_primitives::NimbusId;
    type SessionHandler = OwnApplySession;
}
pub struct BabeCurrentBlockRandomnessGetter;
impl BabeCurrentBlockRandomnessGetter {
337
    fn get_block_randomness() -> Option<[u8; 32]> {
337
        // In a relay context we get block randomness from Babe's AuthorVrfRandomness
337
        Babe::author_vrf_randomness()
337
    }
337
    fn get_block_randomness_mixed(subject: &[u8]) -> Option<Hash> {
337
        Self::get_block_randomness()
337
            .map(|random_hash| mix_randomness::<Runtime>(random_hash, subject))
337
    }
}
/// Combines the vrf output of the previous block with the provided subject.
/// This ensures that the randomness will be different on different pallets, as long as the subject is different.
3
pub fn mix_randomness<T: frame_system::Config>(vrf_output: [u8; 32], subject: &[u8]) -> T::Hash {
3
    let mut digest = Vec::new();
3
    digest.extend_from_slice(vrf_output.as_ref());
3
    digest.extend_from_slice(subject);
3

            
3
    T::Hashing::hash(digest.as_slice())
3
}
/// Read full_rotation_period from pallet_configuration
pub struct ConfigurationCollatorRotationSessionPeriod;
impl Get<u32> for ConfigurationCollatorRotationSessionPeriod {
743
    fn get() -> u32 {
743
        CollatorConfiguration::config().full_rotation_period
743
    }
}
// CollatorAssignment expects to set up the rotation's randomness seed on the
// on_finalize hook of the block prior to the actual session change.
// So should_end_session should be true on the last block of the current session
pub struct BabeGetRandomnessForNextBlock;
impl GetRandomnessForNextBlock<u32> for BabeGetRandomnessForNextBlock {
7044
    fn should_end_session(n: u32) -> bool {
7044
        // Check if next slot there is a session change
7044
        n != 1 && {
7044
            let diff = Babe::current_slot()
7044
                .saturating_add(1u64)
7044
                .saturating_sub(Babe::current_epoch_start());
7044
            *diff >= Babe::current_epoch().duration
        }
7044
    }
336
    fn get_randomness() -> [u8; 32] {
336
        let block_number = System::block_number();
336
        let random_seed = if block_number != 0 {
336
            if let Some(random_hash) = {
336
                BabeCurrentBlockRandomnessGetter::get_block_randomness_mixed(b"CollatorAssignment")
336
            } {
                // Return random_hash as a [u8; 32] instead of a Hash
2
                let mut buf = [0u8; 32];
2
                let len = sp_std::cmp::min(32, random_hash.as_ref().len());
2
                buf[..len].copy_from_slice(&random_hash.as_ref()[..len]);
2

            
2
                buf
            } else {
                // If there is no randomness return [0; 32]
334
                [0; 32]
            }
        } else {
            // In block 0 (genesis) there is no randomness
            [0; 32]
        };
336
        random_seed
336
    }
}
// Randomness trait
impl frame_support::traits::Randomness<Hash, BlockNumber> for BabeCurrentBlockRandomnessGetter {
    fn random(subject: &[u8]) -> (Hash, BlockNumber) {
        let block_number = frame_system::Pallet::<Runtime>::block_number();
        let randomness = Self::get_block_randomness_mixed(subject).unwrap_or_default();
        (randomness, block_number)
    }
}
pub struct ParaIdAssignmentHooksImpl;
impl ParaIdAssignmentHooksImpl {
741
    fn charge_para_ids_internal(
741
        blocks_per_session: BlockNumber,
741
        para_id: ParaId,
741
        currently_assigned: &BTreeSet<ParaId>,
741
        maybe_tip: &Option<BalanceOf<Runtime>>,
741
    ) -> Result<Weight, DispatchError> {
        use frame_support::traits::Currency;
        type ServicePaymentCurrency = <Runtime as pallet_services_payment::Config>::Currency;
        // Check if the container chain has enough credits for a session assignments
734
        let maybe_assignment_imbalance =
741
            if pallet_services_payment::Pallet::<Runtime>::burn_collator_assignment_free_credit_for_para(&para_id).is_err() {
15
                let (amount_to_charge, _weight) =
15
                    <Runtime as pallet_services_payment::Config>::ProvideCollatorAssignmentCost::collator_assignment_cost(&para_id);
15
                Some(<ServicePaymentCurrency as Currency<AccountId>>::withdraw(
15
                    &pallet_services_payment::Pallet::<Runtime>::parachain_tank(para_id),
15
                    amount_to_charge,
15
                    WithdrawReasons::FEE,
15
                    ExistenceRequirement::KeepAlive,
15
                )?)
            } else {
726
                None
            };
734
        if let Some(tip) = maybe_tip {
486
            if let Err(e) = pallet_services_payment::Pallet::<Runtime>::charge_tip(&para_id, tip) {
                // Return assignment imbalance to tank on error
1
                if let Some(assignment_imbalance) = maybe_assignment_imbalance {
                    <Runtime as pallet_services_payment::Config>::Currency::resolve_creating(
                        &pallet_services_payment::Pallet::<Runtime>::parachain_tank(para_id),
                        assignment_imbalance,
                    );
1
                }
1
                return Err(e);
485
            }
248
        }
733
        if let Some(assignment_imbalance) = maybe_assignment_imbalance {
8
            <Runtime as pallet_services_payment::Config>::OnChargeForCollatorAssignment::on_unbalanced(assignment_imbalance);
725
        }
        // If the para has been assigned collators for this session it must have enough block credits
        // for the current and the next session.
733
        let block_credits_needed = if currently_assigned.contains(&para_id) {
457
            blocks_per_session * 2
        } else {
276
            blocks_per_session
        };
        // Check if the container chain has enough credits for producing blocks
733
        let free_block_credits =
733
            pallet_services_payment::BlockProductionCredits::<Runtime>::get(para_id)
733
                .unwrap_or_default();
733
        let remaining_block_credits = block_credits_needed.saturating_sub(free_block_credits);
733
        let (block_production_costs, _) =
733
            <Runtime as pallet_services_payment::Config>::ProvideBlockProductionCost::block_cost(
733
                &para_id,
733
            );
733
        // Check if we can withdraw
733
        let remaining_block_credits_to_pay =
733
            u128::from(remaining_block_credits).saturating_mul(block_production_costs);
733
        let remaining_to_pay = remaining_block_credits_to_pay;
733
        // This should take into account whether we tank goes below ED
733
        // The true refers to keepAlive
733
        Balances::can_withdraw(
733
            &pallet_services_payment::Pallet::<Runtime>::parachain_tank(para_id),
733
            remaining_to_pay,
733
        )
733
        .into_result(true)?;
        // TODO: Have proper weight
719
        Ok(Weight::zero())
741
    }
}
impl<AC> ParaIdAssignmentHooks<BalanceOf<Runtime>, AC> for ParaIdAssignmentHooksImpl {
1166
    fn pre_assignment(para_ids: &mut Vec<ParaId>, currently_assigned: &BTreeSet<ParaId>) {
1166
        let blocks_per_session = EpochDurationInBlocks::get();
1166
        para_ids.retain(|para_id| {
461
            with_transaction(|| {
461
                let max_tip =
461
                    pallet_services_payment::MaxTip::<Runtime>::get(para_id).unwrap_or_default();
461
                TransactionOutcome::Rollback(Self::charge_para_ids_internal(
461
                    blocks_per_session,
461
                    *para_id,
461
                    currently_assigned,
461
                    &Some(max_tip),
461
                ))
461
            })
461
            .is_ok()
1166
        });
1166
    }
583
    fn post_assignment(
583
        current_assigned: &BTreeSet<ParaId>,
583
        new_assigned: &mut BTreeMap<ParaId, Vec<AC>>,
583
        maybe_tip: &Option<BalanceOf<Runtime>>,
583
    ) -> Weight {
583
        let blocks_per_session = EpochDurationInBlocks::get();
583
        let mut total_weight = Weight::zero();
583
        new_assigned.retain(|&para_id, collators| {
423
            // Short-circuit in case collators are empty
423
            if collators.is_empty() {
143
                return true;
280
            }
280
            with_storage_layer(|| {
280
                Self::charge_para_ids_internal(
280
                    blocks_per_session,
280
                    para_id,
280
                    current_assigned,
280
                    maybe_tip,
280
                )
280
            })
280
            .inspect(|weight| {
280
                total_weight += *weight;
280
            })
280
            .is_ok()
583
        });
583
        total_weight
583
    }
    /// Make those para ids valid by giving them enough credits, for benchmarking.
    #[cfg(feature = "runtime-benchmarks")]
    fn make_valid_para_ids(para_ids: &[ParaId]) {
        use frame_support::assert_ok;
        let blocks_per_session = EpochDurationInBlocks::get();
        // Enough credits to run any benchmark
        let block_credits = 20 * blocks_per_session;
        let session_credits = 20;
        for para_id in para_ids {
            assert_ok!(ServicesPayment::set_block_production_credits(
                RuntimeOrigin::root(),
                *para_id,
                block_credits,
            ));
            assert_ok!(ServicesPayment::set_collator_assignment_credits(
                RuntimeOrigin::root(),
                *para_id,
                session_credits,
            ));
        }
    }
}
586
fn host_config_at_session(
586
    session_index_to_consider: SessionIndex,
586
) -> HostConfiguration<BlockNumber> {
586
    let active_config = runtime_parachains::configuration::ActiveConfig::<Runtime>::get();
586

            
586
    let mut pending_configs = runtime_parachains::configuration::PendingConfigs::<Runtime>::get();
586

            
586
    // We are not making any assumptions about number of configurations existing in pending config
586
    // storage item.
586
    // First remove any pending configs greater than session index in consideration
586
    pending_configs = pending_configs
586
        .into_iter()
586
        .filter(|element| element.0 <= session_index_to_consider)
586
        .collect::<Vec<_>>();
586
    // Reverse sorting by the session index
586
    pending_configs.sort_by(|a, b| b.0.cmp(&a.0));
586

            
586
    if pending_configs.is_empty() {
580
        active_config
    } else {
        // We will take first pending config which should be as close to the session index as possible
6
        pending_configs
6
            .first()
6
            .expect("already checked for emptiness above")
6
            .1
6
            .clone()
    }
586
}
pub struct GetCoreAllocationConfigurationImpl;
impl Get<Option<CoreAllocationConfiguration>> for GetCoreAllocationConfigurationImpl {
586
    fn get() -> Option<CoreAllocationConfiguration> {
586
        // We do not have to check for session ending as new session always starts at block initialization which means
586
        // whenever this is called, we are either in old session or in start of a one
586
        // as on block initialization epoch index have been incremented and by extension session has been changed.
586
        let session_index_to_consider = Session::current_index() + 1;
586

            
586
        let max_parachain_percentage =
586
            CollatorConfiguration::max_parachain_cores_percentage(session_index_to_consider)
586
                .unwrap_or(Perbill::from_percent(50));
586

            
586
        let config_to_consider = host_config_at_session(session_index_to_consider);
586

            
586
        Some(CoreAllocationConfiguration {
586
            core_count: config_to_consider.scheduler_params.num_cores,
586
            max_parachain_percentage,
586
        })
586
    }
}
impl pallet_collator_assignment::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type HostConfiguration = CollatorConfiguration;
    type ContainerChains = ContainerRegistrar;
    type SessionIndex = u32;
    type SelfParaId = MockParaId;
    type ShouldRotateAllCollators =
        RotateCollatorsEveryNSessions<ConfigurationCollatorRotationSessionPeriod>;
    type GetRandomnessForNextBlock = BabeGetRandomnessForNextBlock;
    type RemoveInvulnerables = ();
    type ParaIdAssignmentHooks = ParaIdAssignmentHooksImpl;
    type CollatorAssignmentTip = ServicesPayment;
    type Currency = Balances;
    type ForceEmptyOrchestrator = ConstBool<true>;
    type CoreAllocationConfiguration = GetCoreAllocationConfigurationImpl;
    type WeightInfo = weights::pallet_collator_assignment::SubstrateWeight<Runtime>;
}
impl pallet_authority_assignment::Config for Runtime {
    type SessionIndex = u32;
    type AuthorityId = nimbus_primitives::NimbusId;
}
impl pallet_authority_mapping::Config for Runtime {
    type SessionIndex = u32;
    type SessionRemovalBoundary = ConstU32<3>;
    type AuthorityId = nimbus_primitives::NimbusId;
}
#[cfg(feature = "runtime-benchmarks")]
mod benchmark_helpers {
    use {
        super::*,
        babe_primitives::{
            digests::{PreDigest, SecondaryPlainPreDigest},
            BABE_ENGINE_ID,
        },
        frame_support::traits::Hooks,
        sp_runtime::{Digest, DigestItem},
    };
    fn end_block() {
        Babe::on_finalize(System::block_number());
        Session::on_finalize(System::block_number());
        Grandpa::on_finalize(System::block_number());
        TransactionPayment::on_finalize(System::block_number());
        Initializer::on_finalize(System::block_number());
        ContainerRegistrar::on_finalize(System::block_number());
        TanssiCollatorAssignment::on_finalize(System::block_number());
    }
    pub fn insert_authorities_and_slot_digests(slot: u64) {
        let pre_digest = Digest {
            logs: vec![DigestItem::PreRuntime(
                BABE_ENGINE_ID,
                PreDigest::SecondaryPlain(SecondaryPlainPreDigest {
                    slot: slot.into(),
                    authority_index: 0,
                })
                .encode(),
            )],
        };
        System::reset_events();
        System::initialize(
            &(System::block_number() + 1),
            &System::parent_hash(),
            &pre_digest,
        );
    }
    pub fn current_slot() -> u64 {
        Babe::current_slot().into()
    }
    fn start_block() {
        insert_authorities_and_slot_digests(current_slot() + 1);
        // Initialize the new block
        Babe::on_initialize(System::block_number());
        ContainerRegistrar::on_initialize(System::block_number());
        Session::on_initialize(System::block_number());
        Initializer::on_initialize(System::block_number());
        TanssiCollatorAssignment::on_initialize(System::block_number());
        InflationRewards::on_initialize(System::block_number());
    }
    pub fn session_to_block(n: u32) -> u32 {
        // let block_number = flashbox_runtime::Period::get() * n;
        let block_number = Babe::current_epoch().duration.saturated_into::<u32>() * n;
        // Add 1 because the block that emits the NewSession event cannot contain any extrinsics,
        // so this is the first block of the new session that can actually be used
        block_number + 1
    }
    pub fn run_to_block(n: u32) {
        while System::block_number() < n {
            run_block();
        }
    }
    pub fn run_block() {
        end_block();
        start_block()
    }
    pub fn run_to_session(n: u32) {
        run_to_block(session_to_block(n));
    }
}
#[cfg(all(test, feature = "try-runtime"))]
mod remote_tests {
    use {
        super::*,
        frame_try_runtime::{runtime_decl_for_try_runtime::TryRuntime, UpgradeCheckSelect},
        remote_externalities::{
            Builder, Mode, OfflineConfig, OnlineConfig, SnapshotConfig, Transport,
        },
        std::env::var,
    };
    #[tokio::test]
    async fn run_migrations() {
        if var("RUN_MIGRATION_TESTS").is_err() {
            return;
        }
        sp_tracing::try_init_simple();
        let transport: Transport = var("WS")
            .unwrap_or("wss://starlight-rpc.polkadot.io:443".to_string())
            .into();
        let maybe_state_snapshot: Option<SnapshotConfig> = var("SNAP").map(|s| s.into()).ok();
        let mut ext = Builder::<Block>::default()
            .mode(if let Some(state_snapshot) = maybe_state_snapshot {
                Mode::OfflineOrElseOnline(
                    OfflineConfig {
                        state_snapshot: state_snapshot.clone(),
                    },
                    OnlineConfig {
                        transport,
                        state_snapshot: Some(state_snapshot),
                        ..Default::default()
                    },
                )
            } else {
                Mode::Online(OnlineConfig {
                    transport,
                    ..Default::default()
                })
            })
            .build()
            .await
            .unwrap();
        ext.execute_with(|| Runtime::on_runtime_upgrade(UpgradeCheckSelect::PreAndPost));
    }
}