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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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#![cfg_attr(not(feature = "std"), no_std)]
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// `construct_runtime!` does a lot of recursion and requires us to increase the limit to 256.
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#![recursion_limit = "256"]
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// Make the WASM binary available.
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#[cfg(feature = "std")]
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include!(concat!(env!("OUT_DIR"), "/wasm_binary.rs"));
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use frame_support::storage::{with_storage_layer, with_transaction};
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use frame_support::traits::{ExistenceRequirement, WithdrawReasons};
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#[cfg(feature = "std")]
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use sp_version::NativeVersion;
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use {
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    pallet_services_payment::ProvideCollatorAssignmentCost,
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    polkadot_runtime_common::SlowAdjustingFeeUpdate,
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};
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#[cfg(any(feature = "std", test))]
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pub use sp_runtime::BuildStorage;
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use sp_runtime::{DispatchError, TransactionOutcome};
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pub mod weights;
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#[cfg(test)]
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mod tests;
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use pallet_services_payment::BalanceOf;
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use {
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    cumulus_pallet_parachain_system::RelayNumberMonotonicallyIncreases,
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    cumulus_primitives_core::{relay_chain::SessionIndex, BodyId, ParaId},
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    frame_support::{
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        construct_runtime,
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        dispatch::{DispatchClass, DispatchErrorWithPostInfo},
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        genesis_builder_helper::{build_state, get_preset},
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        pallet_prelude::DispatchResult,
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        parameter_types,
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        traits::{
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            fungible::{Balanced, Credit, Inspect, InspectHold, Mutate, MutateHold},
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            tokens::{
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                imbalance::ResolveTo, PayFromAccount, Precision, Preservation,
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                UnityAssetBalanceConversion,
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            },
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            ConstBool, ConstU128, ConstU32, ConstU64, ConstU8, Contains, EitherOfDiverse,
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            EverythingBut, Imbalance, InsideBoth, InstanceFilter, OnUnbalanced,
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        },
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        weights::{
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            constants::{
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                BlockExecutionWeight, ExtrinsicBaseWeight, RocksDbWeight,
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                WEIGHT_REF_TIME_PER_SECOND,
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            },
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            ConstantMultiplier, Weight, WeightToFeeCoefficient, WeightToFeeCoefficients,
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            WeightToFeePolynomial,
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        },
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        PalletId,
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    },
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    frame_system::{
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        limits::{BlockLength, BlockWeights},
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        EnsureNever, EnsureRoot,
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    },
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    nimbus_primitives::{NimbusId, SlotBeacon},
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    pallet_balances::NegativeImbalance,
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    pallet_invulnerables::InvulnerableRewardDistribution,
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    pallet_registrar::RegistrarHooks,
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    pallet_registrar_runtime_api::ContainerChainGenesisData,
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    pallet_services_payment::ProvideBlockProductionCost,
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    pallet_session::{SessionManager, ShouldEndSession},
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    pallet_stream_payment_runtime_api::{StreamPaymentApiError, StreamPaymentApiStatus},
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    pallet_transaction_payment::FungibleAdapter,
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    polkadot_runtime_common::BlockHashCount,
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    scale_info::prelude::format,
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    serde::{Deserialize, Serialize},
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    smallvec::smallvec,
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    sp_api::impl_runtime_apis,
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    sp_consensus_slots::{Slot, SlotDuration},
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    sp_core::{crypto::KeyTypeId, Get, MaxEncodedLen, OpaqueMetadata, H256},
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    sp_runtime::{
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        create_runtime_str, generic, impl_opaque_keys,
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        traits::{
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            AccountIdConversion, AccountIdLookup, BlakeTwo256, Block as BlockT, ConvertInto,
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            IdentityLookup, Verify,
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        },
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        transaction_validity::{TransactionSource, TransactionValidity},
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        AccountId32, ApplyExtrinsicResult,
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    },
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    sp_std::collections::btree_map::BTreeMap,
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    sp_std::{collections::btree_set::BTreeSet, marker::PhantomData, prelude::*},
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    sp_version::RuntimeVersion,
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    tp_traits::{
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        apply, derive_storage_traits, GetContainerChainAuthor, GetHostConfiguration,
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        GetSessionContainerChains, MaybeSelfChainBlockAuthor, ParaIdAssignmentHooks,
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        RelayStorageRootProvider, RemoveInvulnerables, ShouldRotateAllCollators,
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    },
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};
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pub use {
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    dp_core::{AccountId, Address, Balance, BlockNumber, Hash, Header, Index, Signature},
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    sp_runtime::{MultiAddress, Perbill, Permill},
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};
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/// Block type as expected by this runtime.
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pub type Block = generic::Block<Header, UncheckedExtrinsic>;
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/// A Block signed with a Justification
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pub type SignedBlock = generic::SignedBlock<Block>;
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/// BlockId type as expected by this runtime.
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pub type BlockId = generic::BlockId<Block>;
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/// CollatorId type expected by this runtime.
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pub type CollatorId = AccountId;
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/// The SignedExtension to the basic transaction logic.
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pub type SignedExtra = (
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    frame_system::CheckNonZeroSender<Runtime>,
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    frame_system::CheckSpecVersion<Runtime>,
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    frame_system::CheckTxVersion<Runtime>,
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    frame_system::CheckGenesis<Runtime>,
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    frame_system::CheckEra<Runtime>,
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    frame_system::CheckNonce<Runtime>,
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    frame_system::CheckWeight<Runtime>,
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    pallet_transaction_payment::ChargeTransactionPayment<Runtime>,
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    cumulus_primitives_storage_weight_reclaim::StorageWeightReclaim<Runtime>,
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);
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/// Unchecked extrinsic type as expected by this runtime.
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pub type UncheckedExtrinsic =
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    generic::UncheckedExtrinsic<Address, RuntimeCall, Signature, SignedExtra>;
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/// Extrinsic type that has already been checked.
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pub type CheckedExtrinsic = generic::CheckedExtrinsic<AccountId, RuntimeCall, SignedExtra>;
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/// Executive: handles dispatch to the various modules.
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pub type Executive = frame_executive::Executive<
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    Runtime,
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    Block,
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    frame_system::ChainContext<Runtime>,
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    Runtime,
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    AllPalletsWithSystem,
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>;
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/// DANCE, the native token, uses 12 decimals of precision.
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pub mod currency {
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    use super::Balance;
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    // Provide a common factor between runtimes based on a supply of 10_000_000 tokens.
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    pub const SUPPLY_FACTOR: Balance = 100;
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    pub const MICRODANCE: Balance = 1_000_000;
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    pub const MILLIDANCE: Balance = 1_000_000_000;
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    pub const DANCE: Balance = 1_000_000_000_000;
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    pub const KILODANCE: Balance = 1_000_000_000_000_000;
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    pub const STORAGE_BYTE_FEE: Balance = 100 * MICRODANCE * SUPPLY_FACTOR;
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    pub const STORAGE_ITEM_FEE: Balance = 100 * MILLIDANCE * SUPPLY_FACTOR;
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    pub const fn deposit(items: u32, bytes: u32) -> Balance {
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        items as Balance * STORAGE_ITEM_FEE + (bytes as Balance) * STORAGE_BYTE_FEE
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    }
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}
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/// Handles converting a weight scalar to a fee value, based on the scale and granularity of the
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/// node's balance type.
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///
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/// This should typically create a mapping between the following ranges:
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///   - `[0, MAXIMUM_BLOCK_WEIGHT]`
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///   - `[Balance::min, Balance::max]`
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///
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/// Yet, it can be used for any other sort of change to weight-fee. Some examples being:
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///   - Setting it to `0` will essentially disable the weight fee.
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///   - Setting it to `1` will cause the literal `#[weight = x]` values to be charged.
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pub struct WeightToFee;
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impl WeightToFeePolynomial for WeightToFee {
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    type Balance = Balance;
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    fn polynomial() -> WeightToFeeCoefficients<Self::Balance> {
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        // in Rococo, extrinsic base weight (smallest non-zero weight) is mapped to 1 MILLIUNIT:
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        // in our template, we map to 1/10 of that, or 1/10 MILLIUNIT
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        let p = MILLIUNIT / 10;
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        let q = 100 * Balance::from(ExtrinsicBaseWeight::get().ref_time());
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        smallvec![WeightToFeeCoefficient {
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            degree: 1,
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            negative: false,
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            coeff_frac: Perbill::from_rational(p % q, q),
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            coeff_integer: p / q,
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        }]
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    }
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}
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/// Opaque types. These are used by the CLI to instantiate machinery that don't need to know
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/// the specifics of the runtime. They can then be made to be agnostic over specific formats
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/// of data like extrinsics, allowing for them to continue syncing the network through upgrades
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/// to even the core data structures.
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pub mod opaque {
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    use {
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        super::*,
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        sp_runtime::{generic, traits::BlakeTwo256},
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    };
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    pub use sp_runtime::OpaqueExtrinsic as UncheckedExtrinsic;
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    /// Opaque block header type.
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    pub type Header = generic::Header<BlockNumber, BlakeTwo256>;
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    /// Opaque block type.
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    pub type Block = generic::Block<Header, UncheckedExtrinsic>;
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    /// Opaque block identifier type.
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    pub type BlockId = generic::BlockId<Block>;
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}
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impl_opaque_keys! {
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    pub struct SessionKeys {
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        pub nimbus: Initializer,
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    }
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}
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#[sp_version::runtime_version]
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pub const VERSION: RuntimeVersion = RuntimeVersion {
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    spec_name: create_runtime_str!("flashbox"),
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    impl_name: create_runtime_str!("flashbox"),
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    authoring_version: 1,
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    spec_version: 1200,
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    impl_version: 0,
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    apis: RUNTIME_API_VERSIONS,
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    transaction_version: 1,
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    state_version: 1,
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};
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/// This determines the average expected block time that we are targeting.
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/// Blocks will be produced at a minimum duration defined by `SLOT_DURATION`.
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/// `SLOT_DURATION` is picked up by `pallet_timestamp` which is in turn picked
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/// up by `pallet_aura` to implement `fn slot_duration()`.
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///
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/// Change this to adjust the block time.
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pub const MILLISECS_PER_BLOCK: u64 = 6000;
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// NOTE: Currently it is not possible to change the slot duration after the chain has started.
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//       Attempting to do so will brick block production.
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pub const SLOT_DURATION: u64 = MILLISECS_PER_BLOCK;
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// Time is measured by number of blocks.
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pub const MINUTES: BlockNumber = 60_000 / (MILLISECS_PER_BLOCK as BlockNumber);
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pub const HOURS: BlockNumber = MINUTES * 60;
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pub const DAYS: BlockNumber = HOURS * 24;
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// Unit = the base number of indivisible units for balances
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pub const UNIT: Balance = 1_000_000_000_000;
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pub const MILLIUNIT: Balance = 1_000_000_000;
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pub const MICROUNIT: Balance = 1_000_000;
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/// The existential deposit. Set to 1/10 of the Connected Relay Chain.
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pub const EXISTENTIAL_DEPOSIT: Balance = MILLIUNIT;
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/// We assume that ~5% of the block weight is consumed by `on_initialize` handlers. This is
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/// used to limit the maximal weight of a single extrinsic.
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const AVERAGE_ON_INITIALIZE_RATIO: Perbill = Perbill::from_percent(5);
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/// We allow `Normal` extrinsics to fill up the block up to 75%, the rest can be used by
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/// `Operational` extrinsics.
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const NORMAL_DISPATCH_RATIO: Perbill = Perbill::from_percent(75);
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/// We allow for 2 seconds of compute with a 6 second average block time
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const MAXIMUM_BLOCK_WEIGHT: Weight = Weight::from_parts(
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    WEIGHT_REF_TIME_PER_SECOND.saturating_mul(2),
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    cumulus_primitives_core::relay_chain::MAX_POV_SIZE as u64,
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);
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/// The version information used to identify this runtime when compiled natively.
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#[cfg(feature = "std")]
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pub fn native_version() -> NativeVersion {
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    NativeVersion {
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        runtime_version: VERSION,
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        can_author_with: Default::default(),
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    }
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}
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parameter_types! {
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    pub const Version: RuntimeVersion = VERSION;
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    // This part is copied from Substrate's `bin/node/runtime/src/lib.rs`.
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    //  The `RuntimeBlockLength` and `RuntimeBlockWeights` exist here because the
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    // `DeletionWeightLimit` and `DeletionQueueDepth` depend on those to parameterize
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    // the lazy contract deletion.
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    pub RuntimeBlockLength: BlockLength =
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        BlockLength::max_with_normal_ratio(5 * 1024 * 1024, NORMAL_DISPATCH_RATIO);
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    pub RuntimeBlockWeights: BlockWeights = BlockWeights::builder()
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        .base_block(BlockExecutionWeight::get())
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        .for_class(DispatchClass::all(), |weights| {
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            weights.base_extrinsic = ExtrinsicBaseWeight::get();
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        })
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        .for_class(DispatchClass::Normal, |weights| {
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            weights.max_total = Some(NORMAL_DISPATCH_RATIO * MAXIMUM_BLOCK_WEIGHT);
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        })
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        .for_class(DispatchClass::Operational, |weights| {
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            weights.max_total = Some(MAXIMUM_BLOCK_WEIGHT);
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            // Operational transactions have some extra reserved space, so that they
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            // are included even if block reached `MAXIMUM_BLOCK_WEIGHT`.
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            weights.reserved = Some(
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                MAXIMUM_BLOCK_WEIGHT - NORMAL_DISPATCH_RATIO * MAXIMUM_BLOCK_WEIGHT
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            );
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        })
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        .avg_block_initialization(AVERAGE_ON_INITIALIZE_RATIO)
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        .build_or_panic();
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    pub const SS58Prefix: u16 = 42;
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}
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// Configure FRAME pallets to include in runtime.
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impl frame_system::Config for Runtime {
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    /// The identifier used to distinguish between accounts.
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    type AccountId = AccountId;
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    /// The aggregated dispatch type that is available for extrinsics.
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    type RuntimeCall = RuntimeCall;
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    /// The lookup mechanism to get account ID from whatever is passed in dispatchers.
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    type Lookup = AccountIdLookup<AccountId, ()>;
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    /// The index type for storing how many extrinsics an account has signed.
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    type Nonce = Index;
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    /// The index type for blocks.
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    type Block = Block;
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    /// The type for hashing blocks and tries.
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    type Hash = Hash;
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    /// The hashing algorithm used.
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    type Hashing = BlakeTwo256;
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    /// The ubiquitous event type.
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    type RuntimeEvent = RuntimeEvent;
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    /// The ubiquitous origin type.
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    type RuntimeOrigin = RuntimeOrigin;
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    /// Maximum number of block number to block hash mappings to keep (oldest pruned first).
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    type BlockHashCount = BlockHashCount;
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    /// Runtime version.
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    type Version = Version;
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    /// Converts a module to an index of this module in the runtime.
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    type PalletInfo = PalletInfo;
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    /// The data to be stored in an account.
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    type AccountData = pallet_balances::AccountData<Balance>;
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    /// What to do if a new account is created.
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    type OnNewAccount = ();
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    /// What to do if an account is fully reaped from the system.
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    type OnKilledAccount = ();
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    /// The weight of database operations that the runtime can invoke.
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    type DbWeight = RocksDbWeight;
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    /// The basic call filter to use in dispatchable.
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    type BaseCallFilter = InsideBoth<MaintenanceMode, TxPause>;
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    /// Weight information for the extrinsics of this pallet.
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    type SystemWeightInfo = weights::frame_system::SubstrateWeight<Runtime>;
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    /// Block & extrinsics weights: base values and limits.
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    type BlockWeights = RuntimeBlockWeights;
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    /// The maximum length of a block (in bytes).
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    type BlockLength = RuntimeBlockLength;
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    /// This is used as an identifier of the chain. 42 is the generic substrate prefix.
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    type SS58Prefix = SS58Prefix;
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    /// The action to take on a Runtime Upgrade
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    type OnSetCode = cumulus_pallet_parachain_system::ParachainSetCode<Self>;
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    type MaxConsumers = frame_support::traits::ConstU32<16>;
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    type RuntimeTask = RuntimeTask;
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    type SingleBlockMigrations = ();
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    type MultiBlockMigrator = MultiBlockMigrations;
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    type PreInherents = ();
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    type PostInherents = ();
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    type PostTransactions = ();
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}
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impl pallet_timestamp::Config for Runtime {
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    /// A timestamp: milliseconds since the unix epoch.
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    type Moment = u64;
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    type OnTimestampSet = dp_consensus::OnTimestampSet<
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        <Self as pallet_author_inherent::Config>::SlotBeacon,
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        ConstU64<{ SLOT_DURATION }>,
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    >;
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    type MinimumPeriod = ConstU64<{ SLOT_DURATION / 2 }>;
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    type WeightInfo = weights::pallet_timestamp::SubstrateWeight<Runtime>;
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}
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pub struct CanAuthor;
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impl nimbus_primitives::CanAuthor<NimbusId> for CanAuthor {
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    fn can_author(author: &NimbusId, slot: &u32) -> bool {
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        let authorities = AuthorityAssignment::collator_container_chain(Session::current_index())
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            .expect("authorities should be set")
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            .orchestrator_chain;
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        if authorities.is_empty() {
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            return false;
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        }
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        let author_index = (*slot as usize) % authorities.len();
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        let expected_author = &authorities[author_index];
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        expected_author == author
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    }
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    #[cfg(feature = "runtime-benchmarks")]
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    fn get_authors(_slot: &u32) -> Vec<NimbusId> {
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        AuthorityAssignment::collator_container_chain(Session::current_index())
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            .expect("authorities should be set")
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            .orchestrator_chain
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    }
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}
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407
impl pallet_author_inherent::Config for Runtime {
408
    type AuthorId = NimbusId;
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    type AccountLookup = dp_consensus::NimbusLookUp;
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    type CanAuthor = CanAuthor;
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    type SlotBeacon = dp_consensus::AuraDigestSlotBeacon<Runtime>;
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    type WeightInfo = weights::pallet_author_inherent::SubstrateWeight<Runtime>;
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}
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parameter_types! {
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    pub const ExistentialDeposit: Balance = EXISTENTIAL_DEPOSIT;
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}
418

            
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impl pallet_balances::Config for Runtime {
420
    type MaxLocks = ConstU32<50>;
421
    /// The type for recording an account's balance.
422
    type Balance = Balance;
423
    /// The ubiquitous event type.
424
    type RuntimeEvent = RuntimeEvent;
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    type DustRemoval = ();
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    type ExistentialDeposit = ExistentialDeposit;
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    type AccountStore = System;
428
    type MaxReserves = ConstU32<50>;
429
    type ReserveIdentifier = [u8; 8];
430
    type FreezeIdentifier = RuntimeFreezeReason;
431
    type MaxFreezes = ConstU32<10>;
432
    type RuntimeHoldReason = RuntimeHoldReason;
433
    type RuntimeFreezeReason = RuntimeFreezeReason;
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    type WeightInfo = weights::pallet_balances::SubstrateWeight<Runtime>;
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}
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pub struct DealWithFees<R>(sp_std::marker::PhantomData<R>);
438
impl<R> OnUnbalanced<Credit<R::AccountId, pallet_balances::Pallet<R>>> for DealWithFees<R>
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where
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    R: pallet_balances::Config + pallet_treasury::Config + frame_system::Config,
441
    pallet_treasury::NegativeImbalanceOf<R>: From<NegativeImbalance<R>>,
442
{
443
    // this seems to be called for substrate-based transactions
444
    fn on_unbalanceds(
445
        mut fees_then_tips: impl Iterator<Item = Credit<R::AccountId, pallet_balances::Pallet<R>>>,
446
    ) {
447
        if let Some(fees) = fees_then_tips.next() {
448
            // 80% is burned, 20% goes to the treasury
449
            // Same policy applies for tips as well
450
            let burn_percentage = 80;
451
            let treasury_percentage = 20;
452

            
453
            let (_, to_treasury) = fees.ration(burn_percentage, treasury_percentage);
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            ResolveTo::<pallet_treasury::TreasuryAccountId<R>, pallet_balances::Pallet<R>>::on_unbalanced(to_treasury);
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            // Balances pallet automatically burns dropped Negative Imbalances by decreasing total_supply accordingly
456
            // We need to convert the new Credit type to a negative imbalance
457
            // handle tip if there is one
458
            if let Some(tip) = fees_then_tips.next() {
459
                let (_, to_treasury) = tip.ration(burn_percentage, treasury_percentage);
460
                ResolveTo::<pallet_treasury::TreasuryAccountId<R>, pallet_balances::Pallet<R>>::on_unbalanced(to_treasury);
461
            }
462
        }
463
    }
464

            
465
    // this is called from pallet_evm for Ethereum-based transactions
466
    // (technically, it calls on_unbalanced, which calls this when non-zero)
467
    fn on_nonzero_unbalanced(amount: Credit<R::AccountId, pallet_balances::Pallet<R>>) {
468
        // 80% is burned, 20% goes to the treasury
469
        let burn_percentage = 80;
470
        let treasury_percentage = 20;
471

            
472
        let (_, to_treasury) = amount.ration(burn_percentage, treasury_percentage);
473
        ResolveTo::<pallet_treasury::TreasuryAccountId<R>, pallet_balances::Pallet<R>>::on_unbalanced(to_treasury);
474
    }
475
}
476

            
477
parameter_types! {
478
    pub const TransactionByteFee: Balance = 1;
479
}
480

            
481
impl pallet_transaction_payment::Config for Runtime {
482
    type RuntimeEvent = RuntimeEvent;
483
    // This will burn the fees
484
    type OnChargeTransaction = FungibleAdapter<Balances, DealWithFees<Runtime>>;
485
    type OperationalFeeMultiplier = ConstU8<5>;
486
    type WeightToFee = WeightToFee;
487
    type LengthToFee = ConstantMultiplier<Balance, TransactionByteFee>;
488
    type FeeMultiplierUpdate = SlowAdjustingFeeUpdate<Self>;
489
}
490

            
491
pub const RELAY_CHAIN_SLOT_DURATION_MILLIS: u32 = 6000;
492
pub const UNINCLUDED_SEGMENT_CAPACITY: u32 = 3;
493
pub const BLOCK_PROCESSING_VELOCITY: u32 = 1;
494

            
495
type ConsensusHook = pallet_async_backing::consensus_hook::FixedVelocityConsensusHook<
496
    Runtime,
497
    BLOCK_PROCESSING_VELOCITY,
498
    UNINCLUDED_SEGMENT_CAPACITY,
499
>;
500

            
501
impl cumulus_pallet_parachain_system::Config for Runtime {
502
    type WeightInfo = weights::cumulus_pallet_parachain_system::SubstrateWeight<Runtime>;
503
    type RuntimeEvent = RuntimeEvent;
504
    type OnSystemEvent = ();
505
    type SelfParaId = parachain_info::Pallet<Runtime>;
506
    type OutboundXcmpMessageSource = ();
507
    // Ignore all DMP messages by enqueueing them into `()`:
508
    type DmpQueue = frame_support::traits::EnqueueWithOrigin<(), sp_core::ConstU8<0>>;
509
    type ReservedDmpWeight = ();
510
    type XcmpMessageHandler = ();
511
    type ReservedXcmpWeight = ();
512
    type CheckAssociatedRelayNumber = RelayNumberMonotonicallyIncreases;
513
    type ConsensusHook = ConsensusHook;
514
}
515

            
516
pub struct ParaSlotProvider;
517
impl Get<(Slot, SlotDuration)> for ParaSlotProvider {
518
67
    fn get() -> (Slot, SlotDuration) {
519
67
        let slot = u64::from(<Runtime as pallet_author_inherent::Config>::SlotBeacon::slot());
520
67
        (Slot::from(slot), SlotDuration::from_millis(SLOT_DURATION))
521
67
    }
522
}
523

            
524
parameter_types! {
525
    pub const ExpectedBlockTime: u64 = MILLISECS_PER_BLOCK;
526
}
527

            
528
impl pallet_async_backing::Config for Runtime {
529
    type AllowMultipleBlocksPerSlot = ConstBool<true>;
530
    type GetAndVerifySlot =
531
        pallet_async_backing::ParaSlot<RELAY_CHAIN_SLOT_DURATION_MILLIS, ParaSlotProvider>;
532
    type ExpectedBlockTime = ExpectedBlockTime;
533
}
534

            
535
pub struct OwnApplySession;
536
impl pallet_initializer::ApplyNewSession<Runtime> for OwnApplySession {
537
163
    fn apply_new_session(
538
163
        _changed: bool,
539
163
        session_index: u32,
540
163
        all_validators: Vec<(AccountId, NimbusId)>,
541
163
        queued: Vec<(AccountId, NimbusId)>,
542
163
    ) {
543
163
        // We first initialize Configuration
544
163
        Configuration::initializer_on_new_session(&session_index);
545
163
        // Next: Registrar
546
163
        Registrar::initializer_on_new_session(&session_index);
547
163
        // Next: AuthorityMapping
548
163
        AuthorityMapping::initializer_on_new_session(&session_index, &all_validators);
549
163

            
550
535
        let next_collators = queued.iter().map(|(k, _)| k.clone()).collect();
551
163

            
552
163
        // Next: CollatorAssignment
553
163
        let assignments =
554
163
            CollatorAssignment::initializer_on_new_session(&session_index, next_collators);
555
163

            
556
163
        let queued_id_to_nimbus_map = queued.iter().cloned().collect();
557
163
        AuthorityAssignment::initializer_on_new_session(
558
163
            &session_index,
559
163
            &queued_id_to_nimbus_map,
560
163
            &assignments.next_assignment,
561
163
        );
562
163
    }
563
}
564

            
565
impl pallet_initializer::Config for Runtime {
566
    type SessionIndex = u32;
567

            
568
    /// The identifier type for an authority.
569
    type AuthorityId = NimbusId;
570

            
571
    type SessionHandler = OwnApplySession;
572
}
573

            
574
impl parachain_info::Config for Runtime {}
575

            
576
pub struct CollatorsFromInvulnerables;
577

            
578
/// Play the role of the session manager.
579
impl SessionManager<CollatorId> for CollatorsFromInvulnerables {
580
231
    fn new_session(index: SessionIndex) -> Option<Vec<CollatorId>> {
581
231
        log::info!(
582
            "assembling new collators for new session {} at #{:?}",
583
            index,
584
            <frame_system::Pallet<Runtime>>::block_number(),
585
        );
586

            
587
231
        let invulnerables = Invulnerables::invulnerables().to_vec();
588
231
        let target_session_index = index.saturating_add(1);
589
231
        let max_collators =
590
231
            <Configuration as GetHostConfiguration<u32>>::max_collators(target_session_index);
591
231
        let collators = invulnerables
592
231
            .iter()
593
231
            .take(max_collators as usize)
594
231
            .cloned()
595
231
            .collect();
596
231

            
597
231
        Some(collators)
598
231
    }
599
163
    fn start_session(_: SessionIndex) {
600
163
        // we don't care.
601
163
    }
602
95
    fn end_session(_: SessionIndex) {
603
95
        // we don't care.
604
95
    }
605
}
606

            
607
parameter_types! {
608
    pub const Period: u32 = prod_or_fast!(5 * MINUTES, 1 * MINUTES);
609
    pub const Offset: u32 = 0;
610
}
611

            
612
impl pallet_session::Config for Runtime {
613
    type RuntimeEvent = RuntimeEvent;
614
    type ValidatorId = <Self as frame_system::Config>::AccountId;
615
    // we don't have stash and controller, thus we don't need the convert as well.
616
    type ValidatorIdOf = ConvertInto;
617
    type ShouldEndSession = pallet_session::PeriodicSessions<Period, Offset>;
618
    type NextSessionRotation = pallet_session::PeriodicSessions<Period, Offset>;
619
    type SessionManager = CollatorsFromInvulnerables;
620
    // Essentially just Aura, but let's be pedantic.
621
    type SessionHandler = <SessionKeys as sp_runtime::traits::OpaqueKeys>::KeyTypeIdProviders;
622
    type Keys = SessionKeys;
623
    type WeightInfo = weights::pallet_session::SubstrateWeight<Runtime>;
624
}
625

            
626
pub struct RemoveInvulnerablesImpl;
627

            
628
impl RemoveInvulnerables<CollatorId> for RemoveInvulnerablesImpl {
629
247
    fn remove_invulnerables(
630
247
        collators: &mut Vec<CollatorId>,
631
247
        num_invulnerables: usize,
632
247
    ) -> Vec<CollatorId> {
633
247
        if num_invulnerables == 0 {
634
            return vec![];
635
247
        }
636
247
        // TODO: check if this works on session changes
637
247
        let all_invulnerables = pallet_invulnerables::Invulnerables::<Runtime>::get();
638
247
        if all_invulnerables.is_empty() {
639
            return vec![];
640
247
        }
641
247
        let mut invulnerables = vec![];
642
247
        // TODO: use binary_search when invulnerables are sorted
643
391
        collators.retain(|x| {
644
391
            if invulnerables.len() < num_invulnerables && all_invulnerables.contains(x) {
645
311
                invulnerables.push(x.clone());
646
311
                false
647
            } else {
648
80
                true
649
            }
650
391
        });
651
247

            
652
247
        invulnerables
653
247
    }
654
}
655

            
656
pub struct ParaIdAssignmentHooksImpl;
657

            
658
impl ParaIdAssignmentHooksImpl {
659
251
    fn charge_para_ids_internal(
660
251
        blocks_per_session: tp_traits::BlockNumber,
661
251
        para_id: ParaId,
662
251
        currently_assigned: &BTreeSet<ParaId>,
663
251
        maybe_tip: &Option<BalanceOf<Runtime>>,
664
251
    ) -> Result<Weight, DispatchError> {
665
        use frame_support::traits::Currency;
666
        type ServicePaymentCurrency = <Runtime as pallet_services_payment::Config>::Currency;
667

            
668
        // Check if the container chain has enough credits for a session assignments
669
244
        let maybe_assignment_imbalance =
670
251
            if  pallet_services_payment::Pallet::<Runtime>::burn_collator_assignment_free_credit_for_para(&para_id).is_err() {
671
15
                let (amount_to_charge, _weight) =
672
15
                    <Runtime as pallet_services_payment::Config>::ProvideCollatorAssignmentCost::collator_assignment_cost(&para_id);
673
15
                Some(<ServicePaymentCurrency as Currency<AccountId>>::withdraw(
674
15
                    &pallet_services_payment::Pallet::<Runtime>::parachain_tank(para_id),
675
15
                    amount_to_charge,
676
15
                    WithdrawReasons::FEE,
677
15
                    ExistenceRequirement::KeepAlive,
678
15
                )?)
679
            } else {
680
236
                None
681
            };
682

            
683
244
        if let Some(tip) = maybe_tip {
684
196
            if let Err(e) = pallet_services_payment::Pallet::<Runtime>::charge_tip(&para_id, tip) {
685
                // Return assignment imbalance to tank on error
686
1
                if let Some(assignment_imbalance) = maybe_assignment_imbalance {
687
                    <Runtime as pallet_services_payment::Config>::Currency::resolve_creating(
688
                        &pallet_services_payment::Pallet::<Runtime>::parachain_tank(para_id),
689
                        assignment_imbalance,
690
                    );
691
1
                }
692
1
                return Err(e);
693
195
            }
694
48
        }
695

            
696
243
        if let Some(assignment_imbalance) = maybe_assignment_imbalance {
697
8
            <Runtime as pallet_services_payment::Config>::OnChargeForCollatorAssignment::on_unbalanced(assignment_imbalance);
698
235
        }
699

            
700
        // If the para has been assigned collators for this session it must have enough block credits
701
        // for the current and the next session.
702
243
        let block_credits_needed = if currently_assigned.contains(&para_id) {
703
129
            blocks_per_session * 2
704
        } else {
705
114
            blocks_per_session
706
        };
707
        // Check if the container chain has enough credits for producing blocks
708
243
        let free_block_credits =
709
243
            pallet_services_payment::BlockProductionCredits::<Runtime>::get(para_id)
710
243
                .unwrap_or_default();
711
243
        let remaining_block_credits = block_credits_needed.saturating_sub(free_block_credits);
712
243
        let (block_production_costs, _) =
713
243
            <Runtime as pallet_services_payment::Config>::ProvideBlockProductionCost::block_cost(
714
243
                &para_id,
715
243
            );
716
243
        // Check if we can withdraw
717
243
        let remaining_block_credits_to_pay =
718
243
            u128::from(remaining_block_credits).saturating_mul(block_production_costs);
719
243
        let remaining_to_pay = remaining_block_credits_to_pay;
720
243
        // This should take into account whether we tank goes below ED
721
243
        // The true refers to keepAlive
722
243
        Balances::can_withdraw(
723
243
            &pallet_services_payment::Pallet::<Runtime>::parachain_tank(para_id),
724
243
            remaining_to_pay,
725
243
        )
726
243
        .into_result(true)?;
727
        // TODO: Have proper weight
728
229
        Ok(Weight::zero())
729
251
    }
730
}
731

            
732
impl<AC> ParaIdAssignmentHooks<BalanceOf<Runtime>, AC> for ParaIdAssignmentHooksImpl {
733
326
    fn pre_assignment(para_ids: &mut Vec<ParaId>, currently_assigned: &BTreeSet<ParaId>) {
734
326
        let blocks_per_session = Period::get();
735
326
        para_ids.retain(|para_id| {
736
192
            with_transaction(|| {
737
192
                let max_tip =
738
192
                    pallet_services_payment::MaxTip::<Runtime>::get(para_id).unwrap_or_default();
739
192
                TransactionOutcome::Rollback(Self::charge_para_ids_internal(
740
192
                    blocks_per_session,
741
192
                    *para_id,
742
192
                    currently_assigned,
743
192
                    &Some(max_tip),
744
192
                ))
745
192
            })
746
192
            .is_ok()
747
326
        });
748
326
    }
749

            
750
163
    fn post_assignment(
751
163
        current_assigned: &BTreeSet<ParaId>,
752
163
        new_assigned: &mut BTreeMap<ParaId, Vec<AC>>,
753
163
        maybe_tip: &Option<BalanceOf<Runtime>>,
754
163
    ) -> Weight {
755
163
        let blocks_per_session = Period::get();
756
163
        let mut total_weight = Weight::zero();
757
170
        new_assigned.retain(|&para_id, collators| {
758
170
            // Short-circuit in case collators are empty
759
170
            if collators.is_empty() {
760
111
                return true;
761
59
            }
762
59
            with_storage_layer(|| {
763
59
                Self::charge_para_ids_internal(
764
59
                    blocks_per_session,
765
59
                    para_id,
766
59
                    current_assigned,
767
59
                    maybe_tip,
768
59
                )
769
59
            })
770
59
            .inspect(|weight| {
771
59
                total_weight += *weight;
772
59
            })
773
59
            .is_ok()
774
170
        });
775
163
        total_weight
776
163
    }
777

            
778
    /// Make those para ids valid by giving them enough credits, for benchmarking.
779
    #[cfg(feature = "runtime-benchmarks")]
780
    fn make_valid_para_ids(para_ids: &[ParaId]) {
781
        use frame_support::assert_ok;
782

            
783
        let blocks_per_session = Period::get();
784
        // Enough credits to run any benchmark
785
        let block_credits = 20 * blocks_per_session;
786
        let session_credits = 20;
787

            
788
        for para_id in para_ids {
789
            assert_ok!(ServicesPayment::set_block_production_credits(
790
                RuntimeOrigin::root(),
791
                *para_id,
792
                block_credits,
793
            ));
794
            assert_ok!(ServicesPayment::set_collator_assignment_credits(
795
                RuntimeOrigin::root(),
796
                *para_id,
797
                session_credits,
798
            ));
799
        }
800
    }
801
}
802

            
803
pub struct NeverRotateCollators;
804

            
805
impl ShouldRotateAllCollators<u32> for NeverRotateCollators {
806
163
    fn should_rotate_all_collators(_: u32) -> bool {
807
163
        false
808
163
    }
809
}
810

            
811
impl pallet_collator_assignment::Config for Runtime {
812
    type RuntimeEvent = RuntimeEvent;
813
    type HostConfiguration = Configuration;
814
    type ContainerChains = Registrar;
815
    type SessionIndex = u32;
816
    type SelfParaId = ParachainInfo;
817
    type ShouldRotateAllCollators = NeverRotateCollators;
818
    type GetRandomnessForNextBlock = ();
819
    type RemoveInvulnerables = RemoveInvulnerablesImpl;
820
    type ParaIdAssignmentHooks = ParaIdAssignmentHooksImpl;
821
    type CollatorAssignmentTip = ServicesPayment;
822
    type Currency = Balances;
823
    type ForceEmptyOrchestrator = ConstBool<false>;
824
    type CoreAllocationConfiguration = ();
825
    type WeightInfo = weights::pallet_collator_assignment::SubstrateWeight<Runtime>;
826
}
827

            
828
impl pallet_authority_assignment::Config for Runtime {
829
    type SessionIndex = u32;
830
    type AuthorityId = NimbusId;
831
}
832

            
833
pub const FIXED_BLOCK_PRODUCTION_COST: u128 = 1 * currency::MICRODANCE;
834
pub const FIXED_COLLATOR_ASSIGNMENT_COST: u128 = 100 * currency::MICRODANCE;
835

            
836
pub struct BlockProductionCost<Runtime>(PhantomData<Runtime>);
837
impl ProvideBlockProductionCost<Runtime> for BlockProductionCost<Runtime> {
838
261
    fn block_cost(_para_id: &ParaId) -> (u128, Weight) {
839
261
        (FIXED_BLOCK_PRODUCTION_COST, Weight::zero())
840
261
    }
841
}
842

            
843
pub struct CollatorAssignmentCost<Runtime>(PhantomData<Runtime>);
844
impl ProvideCollatorAssignmentCost<Runtime> for CollatorAssignmentCost<Runtime> {
845
19
    fn collator_assignment_cost(_para_id: &ParaId) -> (u128, Weight) {
846
19
        (FIXED_COLLATOR_ASSIGNMENT_COST, Weight::zero())
847
19
    }
848
}
849

            
850
parameter_types! {
851
    // 60 days worth of blocks
852
    pub const FreeBlockProductionCredits: BlockNumber = 60 * DAYS;
853
    // 60 days worth of blocks
854
    pub const FreeCollatorAssignmentCredits: u32 = FreeBlockProductionCredits::get()/Period::get();
855
}
856

            
857
impl pallet_services_payment::Config for Runtime {
858
    type RuntimeEvent = RuntimeEvent;
859
    /// Handler for fees
860
    type OnChargeForBlock = ();
861
    type OnChargeForCollatorAssignment = ();
862
    type OnChargeForCollatorAssignmentTip = ();
863
    /// Currency type for fee payment
864
    type Currency = Balances;
865
    /// Provider of a block cost which can adjust from block to block
866
    type ProvideBlockProductionCost = BlockProductionCost<Runtime>;
867
    /// Provider of a block cost which can adjust from block to block
868
    type ProvideCollatorAssignmentCost = CollatorAssignmentCost<Runtime>;
869
    /// The maximum number of block credits that can be accumulated
870
    type FreeBlockProductionCredits = FreeBlockProductionCredits;
871
    /// The maximum number of session credits that can be accumulated
872
    type FreeCollatorAssignmentCredits = FreeCollatorAssignmentCredits;
873
    type ManagerOrigin =
874
        EitherOfDiverse<pallet_registrar::EnsureSignedByManager<Runtime>, EnsureRoot<AccountId>>;
875
    type WeightInfo = weights::pallet_services_payment::SubstrateWeight<Runtime>;
876
}
877

            
878
parameter_types! {
879
    pub const ProfileDepositBaseFee: Balance = currency::STORAGE_ITEM_FEE;
880
    pub const ProfileDepositByteFee: Balance = currency::STORAGE_BYTE_FEE;
881
    #[derive(Clone)]
882
    pub const MaxAssignmentsPerParaId: u32 = 10;
883
    #[derive(Clone)]
884
    pub const MaxNodeUrlLen: u32 = 200;
885
}
886

            
887
#[apply(derive_storage_traits)]
888
#[derive(Copy, Serialize, Deserialize, MaxEncodedLen)]
889
pub enum PreserversAssignementPaymentRequest {
890
49
    Free,
891
    StreamPayment {
892
        config: pallet_stream_payment::StreamConfigOf<Runtime>,
893
    },
894
}
895

            
896
#[apply(derive_storage_traits)]
897
#[derive(Copy, Serialize, Deserialize)]
898
pub enum PreserversAssignementPaymentExtra {
899
    Free,
900
    StreamPayment { initial_deposit: Balance },
901
}
902

            
903
#[apply(derive_storage_traits)]
904
#[derive(Copy, Serialize, Deserialize, MaxEncodedLen)]
905
pub enum PreserversAssignementPaymentWitness {
906
24
    Free,
907
    StreamPayment {
908
        stream_id: <Runtime as pallet_stream_payment::Config>::StreamId,
909
    },
910
}
911

            
912
pub struct PreserversAssignementPayment;
913

            
914
impl pallet_data_preservers::AssignmentPayment<AccountId> for PreserversAssignementPayment {
915
    /// Providers requests which kind of payment it accepts.
916
    type ProviderRequest = PreserversAssignementPaymentRequest;
917
    /// Extra parameter the assigner provides.
918
    type AssignerParameter = PreserversAssignementPaymentExtra;
919
    /// Represents the succesful outcome of the assignment.
920
    type AssignmentWitness = PreserversAssignementPaymentWitness;
921

            
922
21
    fn try_start_assignment(
923
21
        assigner: AccountId,
924
21
        provider: AccountId,
925
21
        request: &Self::ProviderRequest,
926
21
        extra: Self::AssignerParameter,
927
21
    ) -> Result<Self::AssignmentWitness, DispatchErrorWithPostInfo> {
928
21
        let witness = match (request, extra) {
929
21
            (Self::ProviderRequest::Free, Self::AssignerParameter::Free) => {
930
21
                Self::AssignmentWitness::Free
931
            }
932
            (
933
                Self::ProviderRequest::StreamPayment { config },
934
                Self::AssignerParameter::StreamPayment { initial_deposit },
935
            ) => {
936
                let stream_id = StreamPayment::open_stream_returns_id(
937
                    assigner,
938
                    provider,
939
                    *config,
940
                    initial_deposit,
941
                )?;
942

            
943
                Self::AssignmentWitness::StreamPayment { stream_id }
944
            }
945
            _ => Err(
946
                pallet_data_preservers::Error::<Runtime>::AssignmentPaymentRequestParameterMismatch,
947
            )?,
948
        };
949

            
950
21
        Ok(witness)
951
21
    }
952

            
953
    fn try_stop_assignment(
954
        provider: AccountId,
955
        witness: Self::AssignmentWitness,
956
    ) -> Result<(), DispatchErrorWithPostInfo> {
957
        match witness {
958
            Self::AssignmentWitness::Free => (),
959
            Self::AssignmentWitness::StreamPayment { stream_id } => {
960
                StreamPayment::close_stream(RuntimeOrigin::signed(provider), stream_id)?;
961
            }
962
        }
963

            
964
        Ok(())
965
    }
966

            
967
    /// Return the values for a free assignment if it is supported.
968
    /// This is required to perform automatic migration from old Bootnodes storage.
969
1
    fn free_variant_values() -> Option<(
970
1
        Self::ProviderRequest,
971
1
        Self::AssignerParameter,
972
1
        Self::AssignmentWitness,
973
1
    )> {
974
1
        Some((
975
1
            Self::ProviderRequest::Free,
976
1
            Self::AssignerParameter::Free,
977
1
            Self::AssignmentWitness::Free,
978
1
        ))
979
1
    }
980

            
981
    // The values returned by the following functions should match with each other.
982
    #[cfg(feature = "runtime-benchmarks")]
983
    fn benchmark_provider_request() -> Self::ProviderRequest {
984
        PreserversAssignementPaymentRequest::Free
985
    }
986

            
987
    #[cfg(feature = "runtime-benchmarks")]
988
    fn benchmark_assigner_parameter() -> Self::AssignerParameter {
989
        PreserversAssignementPaymentExtra::Free
990
    }
991

            
992
    #[cfg(feature = "runtime-benchmarks")]
993
    fn benchmark_assignment_witness() -> Self::AssignmentWitness {
994
        PreserversAssignementPaymentWitness::Free
995
    }
996
}
997

            
998
pub type DataPreserversProfileId = u64;
999

            
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 = DataPreserversProfileId;
    type ProfileDeposit = tp_traits::BytesDeposit<ProfileDepositBaseFee, ProfileDepositByteFee>;
    type AssignmentPayment = PreserversAssignementPayment;
    type AssignmentOrigin = pallet_registrar::EnsureSignedByManager<Runtime>;
    type ForceSetProfileOrigin = EnsureRoot<AccountId>;
    type MaxAssignmentsPerParaId = MaxAssignmentsPerParaId;
    type MaxNodeUrlLen = MaxNodeUrlLen;
    type MaxParaIdsVecLen = MaxLengthParaIds;
}
impl pallet_author_noting::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type ContainerChains = Registrar;
    type SlotBeacon = dp_consensus::AuraDigestSlotBeacon<Runtime>;
    type ContainerChainAuthor = CollatorAssignment;
    type AuthorNotingHook = (InflationRewards, ServicesPayment);
    type RelayOrPara = pallet_author_noting::ParaMode<
        cumulus_pallet_parachain_system::RelaychainDataProvider<Self>,
    >;
    type WeightInfo = weights::pallet_author_noting::SubstrateWeight<Runtime>;
}
parameter_types! {
    pub const PotId: PalletId = PalletId(*b"PotStake");
    pub const MaxCandidates: u32 = 1000;
    pub const MinCandidates: u32 = 5;
    pub const SessionLength: BlockNumber = 5;
    pub const MaxInvulnerables: u32 = 200;
    pub const ExecutiveBody: BodyId = BodyId::Executive;
}
impl pallet_invulnerables::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type UpdateOrigin = EnsureRoot<AccountId>;
    type MaxInvulnerables = MaxInvulnerables;
    type CollatorId = CollatorId;
    type CollatorIdOf = ConvertInto;
    type CollatorRegistration = Session;
    type WeightInfo = weights::pallet_invulnerables::SubstrateWeight<Runtime>;
    #[cfg(feature = "runtime-benchmarks")]
    type Currency = Balances;
}
parameter_types! {
    #[derive(Clone)]
    pub const MaxLengthParaIds: u32 = 200u32;
    pub const MaxEncodedGenesisDataSize: u32 = 5_000_000u32; // 5MB
}
pub struct CurrentSessionIndexGetter;
impl tp_traits::GetSessionIndex<u32> for CurrentSessionIndexGetter {
    /// Returns current session index.
40
    fn session_index() -> u32 {
40
        Session::current_index()
40
    }
}
impl pallet_configuration::Config for Runtime {
    type SessionDelay = ConstU32<2>;
    type SessionIndex = u32;
    type CurrentSessionIndex = CurrentSessionIndexGetter;
    type ForceEmptyOrchestrator = ConstBool<false>;
    type WeightInfo = weights::pallet_configuration::SubstrateWeight<Runtime>;
}
pub struct FlashboxRegistrarHooks;
impl RegistrarHooks for FlashboxRegistrarHooks {
20
    fn para_marked_valid_for_collating(para_id: ParaId) -> Weight {
20
        // Give free credits but only once per para id
20
        ServicesPayment::give_free_credits(&para_id)
20
    }
6
    fn para_deregistered(para_id: ParaId) -> Weight {
        // Clear pallet_author_noting storage
6
        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,
            );
6
        }
        // Remove bootnodes from pallet_data_preservers
6
        DataPreservers::para_deregistered(para_id);
6

            
6
        ServicesPayment::para_deregistered(para_id);
6

            
6
        Weight::default()
6
    }
21
    fn check_valid_for_collating(para_id: ParaId) -> DispatchResult {
21
        // To be able to call mark_valid_for_collating, a container chain must have bootnodes
21
        DataPreservers::check_valid_for_collating(para_id)
21
    }
    #[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: PreserversAssignementPaymentRequest::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,
            PreserversAssignementPaymentExtra::Free,
        )
        .expect("assignement to work");
        assert!(
            pallet_data_preservers::Assignments::<Runtime>::get(para_id).contains(&profile_id),
            "profile should be correctly assigned"
        );
    }
}
pub struct PalletRelayStorageRootProvider;
impl RelayStorageRootProvider for PalletRelayStorageRootProvider {
    fn get_relay_storage_root(relay_block_number: u32) -> Option<H256> {
        pallet_relay_storage_roots::pallet::RelayStorageRoot::<Runtime>::get(relay_block_number)
    }
    #[cfg(feature = "runtime-benchmarks")]
    fn set_relay_storage_root(relay_block_number: u32, storage_root: Option<H256>) {
        pallet_relay_storage_roots::pallet::RelayStorageRootKeys::<Runtime>::mutate(|x| {
            if storage_root.is_some() {
                if x.is_full() {
                    let key = x.remove(0);
                    pallet_relay_storage_roots::pallet::RelayStorageRoot::<Runtime>::remove(key);
                }
                let pos = x.iter().position(|x| *x >= relay_block_number);
                if let Some(pos) = pos {
                    if x[pos] != relay_block_number {
                        x.try_insert(pos, relay_block_number).unwrap();
                    }
                } else {
                    // Push at end
                    x.try_push(relay_block_number).unwrap();
                }
            } else {
                let pos = x.iter().position(|x| *x == relay_block_number);
                if let Some(pos) = pos {
                    x.remove(pos);
                }
            }
        });
        pallet_relay_storage_roots::pallet::RelayStorageRoot::<Runtime>::set(
            relay_block_number,
            storage_root,
        );
    }
}
parameter_types! {
    pub const DepositAmount: Balance = 100 * UNIT;
}
impl pallet_registrar::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RegistrarOrigin = EnsureRoot<AccountId>;
    type MarkValidForCollatingOrigin = EnsureRoot<AccountId>;
    type MaxLengthParaIds = MaxLengthParaIds;
    type MaxGenesisDataSize = MaxEncodedGenesisDataSize;
    type RegisterWithRelayProofOrigin = EnsureNever<AccountId>;
    type RelayStorageRootProvider = PalletRelayStorageRootProvider;
    type SessionDelay = ConstU32<2>;
    type SessionIndex = u32;
    type CurrentSessionIndex = CurrentSessionIndexGetter;
    type Currency = Balances;
    type DepositAmount = DepositAmount;
    type RegistrarHooks = FlashboxRegistrarHooks;
    type RuntimeHoldReason = RuntimeHoldReason;
    type InnerRegistrar = ();
    type WeightInfo = weights::pallet_registrar::SubstrateWeight<Runtime>;
}
impl pallet_authority_mapping::Config for Runtime {
    type SessionIndex = u32;
    type SessionRemovalBoundary = ConstU32<2>;
    type AuthorityId = NimbusId;
}
impl pallet_sudo::Config for Runtime {
    type RuntimeCall = RuntimeCall;
    type RuntimeEvent = RuntimeEvent;
    type WeightInfo = weights::pallet_sudo::SubstrateWeight<Runtime>;
}
impl pallet_utility::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeCall = RuntimeCall;
    type PalletsOrigin = OriginCaller;
    type WeightInfo = weights::pallet_utility::SubstrateWeight<Runtime>;
}
/// The type used to represent the kinds of proxies allowed.
#[apply(derive_storage_traits)]
#[derive(Copy, Ord, PartialOrd, MaxEncodedLen)]
#[allow(clippy::unnecessary_cast)]
pub enum ProxyType {
1
    /// All calls can be proxied. This is the trivial/most permissive filter.
    Any = 0,
2
    /// Only extrinsics that do not transfer funds.
    NonTransfer = 1,
1
    /// Only extrinsics related to governance (democracy and collectives).
    Governance = 2,
1
    /// Only extrinsics related to staking.
    Staking = 3,
1
    /// Allow to veto an announced proxy call.
    CancelProxy = 4,
1
    /// Allow extrinsic related to Balances.
    Balances = 5,
1
    /// Allow extrinsics related to Registrar
    Registrar = 6,
1
    /// Allow extrinsics related to Registrar that needs to be called through Sudo
    SudoRegistrar = 7,
}
impl Default for ProxyType {
    fn default() -> Self {
        Self::Any
    }
}
impl InstanceFilter<RuntimeCall> for ProxyType {
9
    fn filter(&self, c: &RuntimeCall) -> bool {
9
        // Since proxy filters are respected in all dispatches of the Utility
9
        // pallet, it should never need to be filtered by any proxy.
9
        if let RuntimeCall::Utility(..) = c {
            return true;
9
        }
9

            
9
        match self {
1
            ProxyType::Any => true,
            ProxyType::NonTransfer => {
2
                matches!(
2
                    c,
                    RuntimeCall::System(..)
                        | RuntimeCall::ParachainSystem(..)
                        | RuntimeCall::Timestamp(..)
                        | RuntimeCall::Proxy(..)
                        | RuntimeCall::Registrar(..)
                )
            }
            // We don't have governance yet
1
            ProxyType::Governance => false,
1
            ProxyType::Staking => matches!(c, RuntimeCall::Session(..)),
1
            ProxyType::CancelProxy => matches!(
                c,
                RuntimeCall::Proxy(pallet_proxy::Call::reject_announcement { .. })
            ),
            ProxyType::Balances => {
1
                matches!(c, RuntimeCall::Balances(..))
            }
            ProxyType::Registrar => {
1
                matches!(
1
                    c,
                    RuntimeCall::Registrar(..) | RuntimeCall::DataPreservers(..)
                )
            }
1
            ProxyType::SudoRegistrar => match c {
1
                RuntimeCall::Sudo(pallet_sudo::Call::sudo { call: ref x }) => {
1
                    matches!(
1
                        x.as_ref(),
                        &RuntimeCall::Registrar(..) | &RuntimeCall::DataPreservers(..)
                    )
                }
                _ => false,
            },
        }
9
    }
    fn is_superset(&self, o: &Self) -> bool {
        match (self, o) {
            (x, y) if x == y => true,
            (ProxyType::Any, _) => true,
            (_, ProxyType::Any) => false,
            _ => false,
        }
    }
}
impl pallet_proxy::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeCall = RuntimeCall;
    type Currency = Balances;
    type ProxyType = ProxyType;
    // One storage item; key size 32, value size 8
    type ProxyDepositBase = ConstU128<{ currency::deposit(1, 8) }>;
    // Additional storage item size of 33 bytes (32 bytes AccountId + 1 byte sizeof(ProxyType)).
    type ProxyDepositFactor = ConstU128<{ currency::deposit(0, 33) }>;
    type MaxProxies = ConstU32<32>;
    type MaxPending = ConstU32<32>;
    type CallHasher = BlakeTwo256;
    type AnnouncementDepositBase = ConstU128<{ currency::deposit(1, 8) }>;
    // Additional storage item size of 68 bytes:
    // - 32 bytes AccountId
    // - 32 bytes Hasher (Blake2256)
    // - 4 bytes BlockNumber (u32)
    type AnnouncementDepositFactor = ConstU128<{ currency::deposit(0, 68) }>;
    type WeightInfo = weights::pallet_proxy::SubstrateWeight<Runtime>;
}
impl pallet_migrations::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type MigrationsList = (tanssi_runtime_common::migrations::FlashboxMigrations<Runtime>,);
    type XcmExecutionManager = ();
}
parameter_types! {
    pub MbmServiceWeight: Weight = Perbill::from_percent(80) * RuntimeBlockWeights::get().max_block;
}
impl pallet_multiblock_migrations::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    #[cfg(not(feature = "runtime-benchmarks"))]
    type Migrations = ();
    // 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>;
}
/// Maintenance mode Call filter
pub struct MaintenanceFilter;
impl Contains<RuntimeCall> for MaintenanceFilter {
    fn contains(c: &RuntimeCall) -> bool {
        !matches!(
            c,
            RuntimeCall::Balances(..)
                | RuntimeCall::Registrar(..)
                | RuntimeCall::Session(..)
                | RuntimeCall::System(..)
                | RuntimeCall::Utility(..)
        )
    }
}
/// We allow everything but registering parathreads
pub struct IsRegisterParathreads;
impl Contains<RuntimeCall> for IsRegisterParathreads {
85
    fn contains(c: &RuntimeCall) -> bool {
84
        matches!(
1
            c,
            RuntimeCall::Registrar(pallet_registrar::Call::register_parathread { .. })
        )
85
    }
}
impl pallet_maintenance_mode::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type NormalCallFilter = EverythingBut<IsRegisterParathreads>;
    type MaintenanceCallFilter = MaintenanceFilter;
    type MaintenanceOrigin = EnsureRoot<AccountId>;
    type XcmExecutionManager = ();
}
parameter_types! {
    pub const MaxStorageRoots: u32 = 10; // 1 minute of relay blocks
}
impl pallet_relay_storage_roots::Config for Runtime {
    type RelaychainStateProvider = cumulus_pallet_parachain_system::RelaychainDataProvider<Self>;
    type MaxStorageRoots = MaxStorageRoots;
    type WeightInfo = weights::pallet_relay_storage_roots::SubstrateWeight<Runtime>;
}
impl pallet_root_testing::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
}
parameter_types! {
    pub StakingAccount: AccountId32 = PalletId(*b"POOLSTAK").into_account_truncating();
    pub const InitialManualClaimShareValue: u128 = currency::MILLIDANCE;
    pub const InitialAutoCompoundingShareValue: u128 = currency::MILLIDANCE;
    pub const MinimumSelfDelegation: u128 = 10 * currency::KILODANCE;
    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;
}
parameter_types! {
    pub ParachainBondAccount: AccountId32 = PalletId(*b"ParaBond").into_account_truncating();
    pub PendingRewardsAccount: AccountId32 = PalletId(*b"PENDREWD").into_account_truncating();
    // The equation to solve is:
    // initial_supply * (1.05) = initial_supply * (1+x)^5_259_600
    // we should solve for x = (1.05)^(1/5_259_600) -1 -> 0.000000009 per block or 9/1_000_000_000
    // 1% in the case of dev mode
    // TODO: check if we can put the prod inflation for tests too
    // TODO: better calculus for going from annual to block inflation (if it can be done)
    pub const InflationRate: Perbill = prod_or_fast!(Perbill::from_parts(9), Perbill::from_percent(1));
    // 30% for parachain bond, so 70% for staking
    pub const RewardsPortion: Perbill = Perbill::from_percent(70);
}
pub struct GetSelfChainBlockAuthor;
impl MaybeSelfChainBlockAuthor<AccountId32> for GetSelfChainBlockAuthor {
2106
    fn get_block_author() -> Option<AccountId32> {
2106
        // TODO: we should do a refactor here, and use either authority-mapping or collator-assignemnt
2106
        // we should also make sure we actually account for the weight of these
2106
        // although most of these should be cached as they are read every block
2106
        let slot = u64::from(<Runtime as pallet_author_inherent::Config>::SlotBeacon::slot());
2106
        let self_para_id = ParachainInfo::get();
2106
        CollatorAssignment::author_for_slot(slot.into(), self_para_id)
2106
    }
}
pub struct OnUnbalancedInflation;
impl frame_support::traits::OnUnbalanced<Credit<AccountId, Balances>> for OnUnbalancedInflation {
1053
    fn on_nonzero_unbalanced(credit: Credit<AccountId, Balances>) {
1053
        let _ = <Balances as Balanced<_>>::resolve(&ParachainBondAccount::get(), credit);
1053
    }
}
impl pallet_inflation_rewards::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type Currency = Balances;
    type ContainerChains = Registrar;
    type GetSelfChainBlockAuthor = GetSelfChainBlockAuthor;
    type InflationRate = InflationRate;
    type OnUnbalanced = OnUnbalancedInflation;
    type PendingRewardsAccount = PendingRewardsAccount;
    type StakingRewardsDistributor = InvulnerableRewardDistribution<Self, Balances, ()>;
    type RewardsPortion = RewardsPortion;
}
impl pallet_tx_pause::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeCall = RuntimeCall;
    type PauseOrigin = EnsureRoot<AccountId>;
    type UnpauseOrigin = EnsureRoot<AccountId>;
    type WhitelistedCalls = ();
    type MaxNameLen = ConstU32<256>;
    type WeightInfo = weights::pallet_tx_pause::SubstrateWeight<Runtime>;
}
#[apply(derive_storage_traits)]
#[derive(Copy, Serialize, Deserialize, MaxEncodedLen)]
pub enum StreamPaymentAssetId {
5
    Native,
}
pub struct StreamPaymentAssets;
impl pallet_stream_payment::Assets<AccountId, StreamPaymentAssetId, Balance>
    for StreamPaymentAssets
{
2
    fn transfer_deposit(
2
        asset_id: &StreamPaymentAssetId,
2
        from: &AccountId,
2
        to: &AccountId,
2
        amount: Balance,
2
    ) -> frame_support::pallet_prelude::DispatchResult {
2
        match asset_id {
2
            StreamPaymentAssetId::Native => {
2
                // We remove the hold before transfering.
2
                Self::decrease_deposit(asset_id, from, amount)?;
2
                Balances::transfer(from, to, amount, Preservation::Preserve).map(|_| ())
            }
        }
2
    }
1
    fn increase_deposit(
1
        asset_id: &StreamPaymentAssetId,
1
        account: &AccountId,
1
        amount: Balance,
1
    ) -> frame_support::pallet_prelude::DispatchResult {
1
        match asset_id {
1
            StreamPaymentAssetId::Native => Balances::hold(
1
                &pallet_stream_payment::HoldReason::StreamPayment.into(),
1
                account,
1
                amount,
1
            ),
1
        }
1
    }
3
    fn decrease_deposit(
3
        asset_id: &StreamPaymentAssetId,
3
        account: &AccountId,
3
        amount: Balance,
3
    ) -> frame_support::pallet_prelude::DispatchResult {
3
        match asset_id {
3
            StreamPaymentAssetId::Native => Balances::release(
3
                &pallet_stream_payment::HoldReason::StreamPayment.into(),
3
                account,
3
                amount,
3
                Precision::Exact,
3
            )
3
            .map(|_| ()),
3
        }
3
    }
    fn get_deposit(asset_id: &StreamPaymentAssetId, account: &AccountId) -> Balance {
        match asset_id {
            StreamPaymentAssetId::Native => Balances::balance_on_hold(
                &pallet_stream_payment::HoldReason::StreamPayment.into(),
                account,
            ),
        }
    }
    /// Benchmarks: should return the asset id which has the worst performance when interacting
    /// with it.
    #[cfg(feature = "runtime-benchmarks")]
    fn bench_worst_case_asset_id() -> StreamPaymentAssetId {
        StreamPaymentAssetId::Native
    }
    /// Benchmarks: should return the another asset id which has the worst performance when interacting
    /// with it afther `bench_worst_case_asset_id`. This is to benchmark the worst case when changing config
    /// from one asset to another.
    #[cfg(feature = "runtime-benchmarks")]
    fn bench_worst_case_asset_id2() -> StreamPaymentAssetId {
        StreamPaymentAssetId::Native
    }
    /// Benchmarks: should set the balance for the asset id returned by `bench_worst_case_asset_id`.
    #[cfg(feature = "runtime-benchmarks")]
    fn bench_set_balance(asset_id: &StreamPaymentAssetId, account: &AccountId, amount: Balance) {
        // only one asset id
        let StreamPaymentAssetId::Native = asset_id;
        Balances::set_balance(account, amount);
    }
}
#[apply(derive_storage_traits)]
#[derive(Copy, Serialize, Deserialize, MaxEncodedLen)]
pub enum TimeUnit {
5
    BlockNumber,
    Timestamp,
    // TODO: Container chains/relay block number.
}
pub struct TimeProvider;
impl pallet_stream_payment::TimeProvider<TimeUnit, Balance> for TimeProvider {
4
    fn now(unit: &TimeUnit) -> Option<Balance> {
4
        match *unit {
4
            TimeUnit::BlockNumber => Some(System::block_number().into()),
            TimeUnit::Timestamp => Some(Timestamp::get().into()),
        }
4
    }
    /// Benchmarks: should return the time unit which has the worst performance calling
    /// `TimeProvider::now(unit)` with.
    #[cfg(feature = "runtime-benchmarks")]
    fn bench_worst_case_time_unit() -> TimeUnit {
        // Both BlockNumber and Timestamp cost the same (1 db read), but overriding timestamp
        // doesn't work well in benches, while block number works fine.
        TimeUnit::BlockNumber
    }
    /// Benchmarks: sets the "now" time for time unit returned by `worst_case_time_unit`.
    #[cfg(feature = "runtime-benchmarks")]
    fn bench_set_now(instant: Balance) {
        System::set_block_number(instant as u32)
    }
}
type StreamId = u64;
parameter_types! {
    // 1 entry, storing 173 bytes on-chain
    pub const OpenStreamHoldAmount: Balance = currency::deposit(1, 173);
}
impl pallet_stream_payment::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type StreamId = StreamId;
    type TimeUnit = TimeUnit;
    type Balance = Balance;
    type AssetId = StreamPaymentAssetId;
    type Assets = StreamPaymentAssets;
    type Currency = Balances;
    type OpenStreamHoldAmount = OpenStreamHoldAmount;
    type RuntimeHoldReason = RuntimeHoldReason;
    type TimeProvider = TimeProvider;
    type WeightInfo = weights::pallet_stream_payment::SubstrateWeight<Runtime>;
}
parameter_types! {
    // 1 entry, storing 258 bytes on-chain
    pub const BasicDeposit: Balance = currency::deposit(1, 258);
    // 1 entry, storing 53 bytes on-chain
    pub const SubAccountDeposit: Balance = currency::deposit(1, 53);
    // Additional bytes adds 0 entries, storing 1 byte on-chain
    pub const ByteDeposit: Balance = currency::deposit(0, 1);
    pub const MaxSubAccounts: u32 = 100;
    pub const MaxAdditionalFields: u32 = 100;
    pub const MaxRegistrars: u32 = 20;
}
impl pallet_identity::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type Currency = Balances;
    type BasicDeposit = BasicDeposit;
    type ByteDeposit = ByteDeposit;
    type SubAccountDeposit = SubAccountDeposit;
    type MaxSubAccounts = MaxSubAccounts;
    type MaxRegistrars = MaxRegistrars;
    type IdentityInformation = pallet_identity::legacy::IdentityInfo<MaxAdditionalFields>;
    // Slashed balances are burnt
    type Slashed = ();
    type ForceOrigin = EnsureRoot<AccountId>;
    type RegistrarOrigin = EnsureRoot<AccountId>;
    type OffchainSignature = Signature;
    type SigningPublicKey = <Signature as Verify>::Signer;
    type UsernameAuthorityOrigin = EnsureRoot<Self::AccountId>;
    type PendingUsernameExpiration = ConstU32<{ 7 * DAYS }>;
    type MaxSuffixLength = ConstU32<7>;
    type MaxUsernameLength = ConstU32<32>;
    type WeightInfo = weights::pallet_identity::SubstrateWeight<Runtime>;
}
parameter_types! {
    pub const TreasuryId: PalletId = PalletId(*b"tns/tsry");
    pub const ProposalBond: Permill = Permill::from_percent(5);
    pub TreasuryAccount: AccountId = Treasury::account_id();
    pub const MaxBalance: Balance = Balance::max_value();
    pub const SpendPeriod: BlockNumber = prod_or_fast!(6 * DAYS, 1 * MINUTES);
}
impl pallet_treasury::Config for Runtime {
    type PalletId = TreasuryId;
    type Currency = Balances;
    type RejectOrigin = EnsureRoot<AccountId>;
    type RuntimeEvent = RuntimeEvent;
    // If proposal gets rejected, bond goes to treasury
    type SpendPeriod = SpendPeriod;
    type Burn = ();
    type BurnDestination = ();
    type MaxApprovals = ConstU32<100>;
    type WeightInfo = weights::pallet_treasury::SubstrateWeight<Runtime>;
    type SpendFunds = ();
    type SpendOrigin =
        frame_system::EnsureWithSuccess<EnsureRoot<AccountId>, AccountId, MaxBalance>;
    type AssetKind = ();
    type Beneficiary = AccountId;
    type BeneficiaryLookup = IdentityLookup<AccountId>;
    type Paymaster = PayFromAccount<Balances, TreasuryAccount>;
    type BalanceConverter = UnityAssetBalanceConversion;
    type PayoutPeriod = ConstU32<{ 30 * DAYS }>;
    #[cfg(feature = "runtime-benchmarks")]
    type BenchmarkHelper = tanssi_runtime_common::benchmarking::TreasuryBenchmarkHelper<Runtime>;
}
parameter_types! {
    // One storage item; key size 32; value is size 4+4+16+32. Total = 1 * (32 + 56)
    pub const DepositBase: Balance = currency::deposit(1, 88);
    // Additional storage item size of 32 bytes.
    pub const DepositFactor: Balance = currency::deposit(0, 32);
    pub const MaxSignatories: u32 = 100;
}
impl pallet_multisig::Config for Runtime {
    type RuntimeEvent = RuntimeEvent;
    type RuntimeCall = RuntimeCall;
    type Currency = Balances;
    type DepositBase = DepositBase;
    type DepositFactor = DepositFactor;
    type MaxSignatories = MaxSignatories;
    type WeightInfo = weights::pallet_multisig::SubstrateWeight<Runtime>;
}
// Create the runtime by composing the FRAME pallets that were previously configured.
192164
construct_runtime!(
17853
    pub enum Runtime
17853
    {
17853
        // System support stuff.
17853
        System: frame_system = 0,
17853
        ParachainSystem: cumulus_pallet_parachain_system = 1,
17853
        Timestamp: pallet_timestamp = 2,
17853
        ParachainInfo: parachain_info = 3,
17853
        Sudo: pallet_sudo = 4,
17853
        Utility: pallet_utility = 5,
17853
        Proxy: pallet_proxy = 6,
17853
        Migrations: pallet_migrations = 7,
17853
        MultiBlockMigrations: pallet_multiblock_migrations = 121,
17853
        MaintenanceMode: pallet_maintenance_mode = 8,
17853
        TxPause: pallet_tx_pause = 9,
17853

            
17853
        // Monetary stuff.
17853
        Balances: pallet_balances = 10,
17853
        TransactionPayment: pallet_transaction_payment = 11,
17853
        StreamPayment: pallet_stream_payment = 12,
17853

            
17853
        // Other utilities
17853
        Identity: pallet_identity = 15,
17853
        Multisig: pallet_multisig = 16,
17853

            
17853
        // ContainerChain management. It should go before Session for Genesis
17853
        Registrar: pallet_registrar = 20,
17853
        Configuration: pallet_configuration = 21,
17853
        CollatorAssignment: pallet_collator_assignment = 22,
17853
        Initializer: pallet_initializer = 23,
17853
        AuthorNoting: pallet_author_noting = 24,
17853
        AuthorityAssignment: pallet_authority_assignment = 25,
17853
        ServicesPayment: pallet_services_payment = 26,
17853
        DataPreservers: pallet_data_preservers = 27,
17853

            
17853
        // Collator support. The order of these 6 are important and shall not change.
17853
        Invulnerables: pallet_invulnerables = 30,
17853
        Session: pallet_session = 31,
17853
        AuthorityMapping: pallet_authority_mapping = 32,
17853
        AuthorInherent: pallet_author_inherent = 33,
17853
        // InflationRewards must be after Session and AuthorInherent
17853
        InflationRewards: pallet_inflation_rewards = 35,
17853

            
17853
        // Treasury stuff.
17853
        Treasury: pallet_treasury::{Pallet, Storage, Config<T>, Event<T>, Call} = 40,
17853

            
17853
        // More system support stuff
17853
        RelayStorageRoots: pallet_relay_storage_roots = 60,
17853

            
17853
        RootTesting: pallet_root_testing = 100,
17853
        AsyncBacking: pallet_async_backing::{Pallet, Storage} = 110,
17853
    }
193623
);
#[cfg(feature = "runtime-benchmarks")]
mod benches {
    frame_benchmarking::define_benchmarks!(
        [frame_system, frame_system_benchmarking::Pallet::<Runtime>]
        [cumulus_pallet_parachain_system, ParachainSystem]
        [pallet_timestamp, Timestamp]
        [pallet_sudo, Sudo]
        [pallet_utility, Utility]
        [pallet_proxy, Proxy]
        [pallet_tx_pause, TxPause]
        [pallet_balances, Balances]
        [pallet_stream_payment, StreamPayment]
        [pallet_identity, Identity]
        [pallet_multiblock_migrations, MultiBlockMigrations]
        [pallet_multisig, Multisig]
        [pallet_registrar, Registrar]
        [pallet_configuration, Configuration]
        [pallet_collator_assignment, CollatorAssignment]
        [pallet_author_noting, AuthorNoting]
        [pallet_services_payment, ServicesPayment]
        [pallet_data_preservers, DataPreservers]
        [pallet_invulnerables, Invulnerables]
        [pallet_session, SessionBench::<Runtime>]
        [pallet_author_inherent, AuthorInherent]
        [pallet_treasury, Treasury]
        [pallet_relay_storage_roots, RelayStorageRoots]
    );
}
impl_runtime_apis! {
    impl sp_consensus_aura::AuraApi<Block, NimbusId> for Runtime {
        fn slot_duration() -> sp_consensus_aura::SlotDuration {
            sp_consensus_aura::SlotDuration::from_millis(SLOT_DURATION)
        }
        fn authorities() -> Vec<NimbusId> {
            // Check whether we need to fetch the next authorities or current ones
            let parent_number = System::block_number();
            let should_end_session = <Runtime as pallet_session::Config>::ShouldEndSession::should_end_session(parent_number + 1);
            let session_index = if should_end_session {
                Session::current_index() +1
            }
            else {
                Session::current_index()
            };
            pallet_authority_assignment::CollatorContainerChain::<Runtime>::get(session_index)
                .expect("authorities for current session should exist")
                .orchestrator_chain
        }
    }
    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 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() -> Vec<u32> {
            Runtime::metadata_versions()
        }
    }
    impl sp_block_builder::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: sp_inherents::InherentData) -> Vec<<Block as BlockT>::Extrinsic> {
            data.create_extrinsics()
        }
        fn check_inherents(
            block: Block,
            data: sp_inherents::InherentData,
        ) -> sp_inherents::CheckInherentsResult {
            data.check_extrinsics(&block)
        }
    }
    impl sp_transaction_pool::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 sp_offchain::OffchainWorkerApi<Block> for Runtime {
        fn offchain_worker(header: &<Block as BlockT>::Header) {
            Executive::offchain_worker(header)
        }
    }
    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>, KeyTypeId)>> {
            SessionKeys::decode_into_raw_public_keys(&encoded)
        }
    }
    impl frame_system_rpc_runtime_api::AccountNonceApi<Block, AccountId, Index> for Runtime {
        fn account_nonce(account: AccountId) -> Index {
            System::account_nonce(account)
        }
    }
    impl cumulus_primitives_core::CollectCollationInfo<Block> for Runtime {
        fn collect_collation_info(header: &<Block as BlockT>::Header) -> cumulus_primitives_core::CollationInfo {
            ParachainSystem::collect_collation_info(header)
        }
    }
    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<sp_genesis_builder::PresetId>) -> Option<Vec<u8>> {
            get_preset::<RuntimeGenesisConfig>(id, |_| None)
        }
        fn preset_names() -> Vec<sp_genesis_builder::PresetId> {
            vec![]
        }
    }
    #[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 cumulus_pallet_session_benchmarking::Pallet as SessionBench;
            use frame_benchmarking::{Benchmarking, BenchmarkList};
            use frame_support::traits::StorageInfoTrait;
            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>, sp_runtime::RuntimeString> {
            use frame_benchmarking::{BenchmarkBatch, Benchmarking, BenchmarkError};
            use sp_core::storage::TrackedStorageKey;
            impl frame_system_benchmarking::Config for Runtime {
                fn setup_set_code_requirements(code: &sp_std::vec::Vec<u8>) -> Result<(), BenchmarkError> {
                    ParachainSystem::initialize_for_set_code_benchmark(code.len() as u32);
                    Ok(())
                }
                fn verify_set_code() {
                    System::assert_last_event(cumulus_pallet_parachain_system::Event::<Runtime>::ValidationFunctionStored.into());
                }
            }
            use cumulus_pallet_session_benchmarking::Pallet as SessionBench;
            impl cumulus_pallet_session_benchmarking::Config for Runtime {}
            let whitelist: Vec<TrackedStorageKey> = vec![
                // Block Number
                hex_literal::hex!("26aa394eea5630e07c48ae0c9558cef702a5c1b19ab7a04f536c519aca4983ac")
                    .to_vec()
                    .into(),
                // Total Issuance
                hex_literal::hex!("c2261276cc9d1f8598ea4b6a74b15c2f57c875e4cff74148e4628f264b974c80")
                    .to_vec()
                    .into(),
                // Execution Phase
                hex_literal::hex!("26aa394eea5630e07c48ae0c9558cef7ff553b5a9862a516939d82b3d3d8661a")
                    .to_vec()
                    .into(),
                // Event Count
                hex_literal::hex!("26aa394eea5630e07c48ae0c9558cef70a98fdbe9ce6c55837576c60c7af3850")
                    .to_vec()
                    .into(),
                // System Events
                hex_literal::hex!("26aa394eea5630e07c48ae0c9558cef780d41e5e16056765bc8461851072c9d7")
                    .to_vec()
                    .into(),
                // The transactional storage limit.
                hex_literal::hex!("3a7472616e73616374696f6e5f6c6576656c3a")
                    .to_vec()
                    .into(),
                // ParachainInfo ParachainId
                hex_literal::hex!(  "0d715f2646c8f85767b5d2764bb2782604a74d81251e398fd8a0a4d55023bb3f")
                    .to_vec()
                    .into(),
            ];
            let mut batches = Vec::<BenchmarkBatch>::new();
            let params = (&config, &whitelist);
            add_benchmarks!(params, batches);
            Ok(batches)
        }
    }
    #[cfg(feature = "try-runtime")]
    impl frame_try_runtime::TryRuntime<Block> for Runtime {
        fn on_runtime_upgrade(checks: frame_try_runtime::UpgradeCheckSelect) -> (Weight, Weight) {
            let weight = Executive::try_runtime_upgrade(checks).unwrap();
            (weight, RuntimeBlockWeights::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_collator_assignment_runtime_api::CollatorAssignmentApi<Block, AccountId, ParaId> for Runtime {
        /// Return the parachain that the given `AccountId` is collating for.
        /// Returns `None` if the `AccountId` is not collating.
8
        fn current_collator_parachain_assignment(account: AccountId) -> Option<ParaId> {
8
            let assigned_collators = CollatorAssignment::collator_container_chain();
8
            let self_para_id = ParachainInfo::get();
8

            
8
            assigned_collators.para_id_of(&account, self_para_id)
8
        }
        /// Return the parachain that the given `AccountId` will be collating for
        /// in the next session change.
        /// Returns `None` if the `AccountId` will not be collating.
6
        fn future_collator_parachain_assignment(account: AccountId) -> Option<ParaId> {
6
            let assigned_collators = CollatorAssignment::pending_collator_container_chain();
6

            
6
            match assigned_collators {
4
                Some(assigned_collators) => {
4
                    let self_para_id = ParachainInfo::get();
4

            
4
                    assigned_collators.para_id_of(&account, self_para_id)
                }
                None => {
2
                    Self::current_collator_parachain_assignment(account)
                }
            }
6
        }
        /// Return the list of collators of the given `ParaId`.
        /// Returns `None` if the `ParaId` is not in the registrar.
14
        fn parachain_collators(para_id: ParaId) -> Option<Vec<AccountId>> {
14
            let assigned_collators = CollatorAssignment::collator_container_chain();
14
            let self_para_id = ParachainInfo::get();
14

            
14
            if para_id == self_para_id {
9
                Some(assigned_collators.orchestrator_chain)
            } else {
5
                assigned_collators.container_chains.get(&para_id).cloned()
            }
14
        }
    }
    impl pallet_registrar_runtime_api::RegistrarApi<Block, ParaId> for Runtime {
        /// Return the registered para ids
5
        fn registered_paras() -> Vec<ParaId> {
5
            // We should return the container-chains for the session in which we are kicking in
5
            let parent_number = System::block_number();
5
            let should_end_session = <Runtime as pallet_session::Config>::ShouldEndSession::should_end_session(parent_number + 1);
5
            let session_index = if should_end_session {
                Session::current_index() +1
            }
            else {
5
                Session::current_index()
            };
5
            let container_chains = Registrar::session_container_chains(session_index);
5
            let mut para_ids = vec![];
5
            para_ids.extend(container_chains.parachains);
5
            para_ids.extend(container_chains.parathreads.into_iter().map(|(para_id, _)| para_id));
5

            
5
            para_ids
5
        }
        /// Fetch genesis data for this para id
7
        fn genesis_data(para_id: ParaId) -> Option<ContainerChainGenesisData> {
7
            Registrar::para_genesis_data(para_id)
7
        }
        /// 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_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 dp_consensus::TanssiAuthorityAssignmentApi<Block, NimbusId> for Runtime {
        /// Return the current authorities assigned to a given paraId
1069
        fn para_id_authorities(para_id: ParaId) -> Option<Vec<NimbusId>> {
1069
            let parent_number = System::block_number();
1069

            
1069
            let should_end_session = <Runtime as pallet_session::Config>::ShouldEndSession::should_end_session(parent_number + 1);
1069
            let session_index = if should_end_session {
99
                Session::current_index() +1
            }
            else {
970
                Session::current_index()
            };
1069
            let assigned_authorities = AuthorityAssignment::collator_container_chain(session_index)?;
1069
            let self_para_id = ParachainInfo::get();
1069

            
1069
            if para_id == self_para_id {
1061
                Some(assigned_authorities.orchestrator_chain)
            } else {
8
                assigned_authorities.container_chains.get(&para_id).cloned()
            }
1069
        }
        /// Return the paraId assigned to a given authority
32
        fn check_para_id_assignment(authority: NimbusId) -> Option<ParaId> {
32
            let parent_number = System::block_number();
32
            let should_end_session = <Runtime as pallet_session::Config>::ShouldEndSession::should_end_session(parent_number + 1);
32
            let session_index = if should_end_session {
8
                Session::current_index() +1
            }
            else {
24
                Session::current_index()
            };
32
            let assigned_authorities = AuthorityAssignment::collator_container_chain(session_index)?;
32
            let self_para_id = ParachainInfo::get();
32

            
32
            assigned_authorities.para_id_of(&authority, self_para_id)
32
        }
        /// Return the paraId assigned to a given authority on the next session.
        /// On session boundary this returns the same as `check_para_id_assignment`.
12
        fn check_para_id_assignment_next_session(authority: NimbusId) -> Option<ParaId> {
12
            let session_index = Session::current_index() + 1;
12
            let assigned_authorities = AuthorityAssignment::collator_container_chain(session_index)?;
12
            let self_para_id = ParachainInfo::get();
12

            
12
            assigned_authorities.para_id_of(&authority, self_para_id)
12
        }
    }
    impl pallet_transaction_payment_rpc_runtime_api::TransactionPaymentApi<Block, Balance>
    for Runtime {
        fn query_info(
            uxt: <Block as BlockT>::Extrinsic,
            len: u32,
        ) -> pallet_transaction_payment_rpc_runtime_api::RuntimeDispatchInfo<Balance> {
            TransactionPayment::query_info(uxt, len)
        }
        fn query_fee_details(
            uxt: <Block as BlockT>::Extrinsic,
            len: u32,
        ) -> pallet_transaction_payment::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_stream_payment_runtime_api::StreamPaymentApi<Block, StreamId, Balance, Balance>
    for Runtime {
        fn stream_payment_status(
            stream_id: StreamId,
            now: Option<Balance>,
        ) -> Result<StreamPaymentApiStatus<Balance>, StreamPaymentApiError> {
            match StreamPayment::stream_payment_status(stream_id, now) {
                Ok(pallet_stream_payment::StreamPaymentStatus {
                    payment, deposit_left, stalled
                }) => Ok(StreamPaymentApiStatus {
                    payment, deposit_left, stalled
                }),
                Err(pallet_stream_payment::Error::<Runtime>::UnknownStreamId)
                => Err(StreamPaymentApiError::UnknownStreamId),
                Err(e) => Err(StreamPaymentApiError::Other(format!("{e:?}")))
            }
        }
    }
    impl pallet_data_preservers_runtime_api::DataPreserversApi<Block, DataPreserversProfileId, ParaId> for Runtime {
        fn get_active_assignment(
            profile_id: DataPreserversProfileId,
        ) -> pallet_data_preservers_runtime_api::Assignment<ParaId> {
            use pallet_data_preservers_runtime_api::Assignment;
            use pallet_stream_payment::StreamPaymentStatus;
            let Some((para_id, witness)) = pallet_data_preservers::Profiles::<Runtime>::get(profile_id)
                .and_then(|x| x.assignment) else
            {
                return Assignment::NotAssigned;
            };
            match witness {
                PreserversAssignementPaymentWitness::Free => Assignment::Active(para_id),
                PreserversAssignementPaymentWitness::StreamPayment { stream_id } => {
                    // Error means no Stream exists with that ID or some issue occured when computing
                    // the status. In that case we cannot consider the assignment as active.
                    let Ok(StreamPaymentStatus { stalled, .. }) = StreamPayment::stream_payment_status( stream_id, None) else {
                        return Assignment::Inactive(para_id);
                    };
                    if stalled {
                        Assignment::Inactive(para_id)
                    } else {
                        Assignment::Active(para_id)
                    }
                },
            }
        }
    }
    impl async_backing_primitives::UnincludedSegmentApi<Block> for Runtime {
        fn can_build_upon(
            included_hash: <Block as BlockT>::Hash,
            slot: async_backing_primitives::Slot,
        ) -> bool {
            ConsensusHook::can_build_upon(included_hash, slot)
        }
    }
    impl dp_slot_duration_runtime_api::TanssiSlotDurationApi<Block> for Runtime {
        fn slot_duration() -> u64 {
            SLOT_DURATION
        }
    }
    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
        }
    }
}
#[allow(dead_code)]
struct CheckInherents;
// TODO: this should be removed but currently if we remove it the relay does not check anything
// related to other inherents that are not parachain-system
#[allow(deprecated)]
impl cumulus_pallet_parachain_system::CheckInherents<Block> for CheckInherents {
    fn check_inherents(
        block: &Block,
        relay_state_proof: &cumulus_pallet_parachain_system::RelayChainStateProof,
    ) -> sp_inherents::CheckInherentsResult {
        let relay_chain_slot = relay_state_proof
            .read_slot()
            .expect("Could not read the relay chain slot from the proof");
        let inherent_data =
            cumulus_primitives_timestamp::InherentDataProvider::from_relay_chain_slot_and_duration(
                relay_chain_slot,
                sp_std::time::Duration::from_secs(6),
            )
            .create_inherent_data()
            .expect("Could not create the timestamp inherent data");
        inherent_data.check_extrinsics(block)
    }
}
cumulus_pallet_parachain_system::register_validate_block! {
    Runtime = Runtime,
    CheckInherents = CheckInherents,
    BlockExecutor = pallet_author_inherent::BlockExecutor::<Runtime, Executive>,
}
#[macro_export]
macro_rules! prod_or_fast {
    ($prod:expr, $test:expr) => {
        if cfg!(feature = "fast-runtime") {
            $test
        } else {
            $prod
        }
    };
    ($prod:expr, $test:expr, $env:expr) => {
        if cfg!(feature = "fast-runtime") {
            core::option_env!($env)
                .map(|s| s.parse().ok())
                .flatten()
                .unwrap_or($test)
        } else {
            $prod
        }
    };
}