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https://github.com/pezkuwichain/pezkuwi-subxt.git
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Merge commit 'e5bed7ac380b6adb54b60a2a72a2a8f07f50d6c1' as 'bridges'
This commit is contained in:
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[package]
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name = "bp-rialto"
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description = "Primitives of Rialto runtime."
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version = "0.1.0"
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authors = ["Parity Technologies <admin@parity.io>"]
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edition = "2018"
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license = "GPL-3.0-or-later WITH Classpath-exception-2.0"
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[dependencies]
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# Bridge Dependencies
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bp-messages = { path = "../messages", default-features = false }
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bp-runtime = { path = "../runtime", default-features = false }
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# Substrate Based Dependencies
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frame-support = { git = "https://github.com/paritytech/substrate", branch = "master" , default-features = false }
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frame-system = { git = "https://github.com/paritytech/substrate", branch = "master" , default-features = false }
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sp-api = { git = "https://github.com/paritytech/substrate", branch = "master" , default-features = false }
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sp-core = { git = "https://github.com/paritytech/substrate", branch = "master" , default-features = false }
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sp-runtime = { git = "https://github.com/paritytech/substrate", branch = "master" , default-features = false }
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sp-std = { git = "https://github.com/paritytech/substrate", branch = "master" , default-features = false }
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[features]
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default = ["std"]
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std = [
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"bp-messages/std",
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"bp-runtime/std",
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"frame-support/std",
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"frame-system/std",
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"sp-api/std",
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"sp-core/std",
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"sp-runtime/std",
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"sp-std/std",
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]
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@@ -0,0 +1,320 @@
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// Copyright 2019-2021 Parity Technologies (UK) Ltd.
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// This file is part of Parity Bridges Common.
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// Parity Bridges Common is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Bridges Common is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
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#![cfg_attr(not(feature = "std"), no_std)]
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// RuntimeApi generated functions
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#![allow(clippy::too_many_arguments)]
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// Runtime-generated DecodeLimit::decode_all_With_depth_limit
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#![allow(clippy::unnecessary_mut_passed)]
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use bp_messages::{LaneId, MessageNonce, UnrewardedRelayersState};
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use bp_runtime::Chain;
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use frame_support::{
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weights::{constants::WEIGHT_PER_SECOND, DispatchClass, Weight},
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Parameter, RuntimeDebug,
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};
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use frame_system::limits;
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use sp_core::Hasher as HasherT;
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use sp_runtime::{
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traits::{BlakeTwo256, Convert, IdentifyAccount, Verify},
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MultiSignature, MultiSigner, Perbill,
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};
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use sp_std::prelude::*;
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/// Number of extra bytes (excluding size of storage value itself) of storage proof, built at
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/// Rialto chain. This mostly depends on number of entries (and their density) in the storage trie.
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/// Some reserve is reserved to account future chain growth.
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pub const EXTRA_STORAGE_PROOF_SIZE: u32 = 1024;
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/// Number of bytes, included in the signed Rialto transaction apart from the encoded call itself.
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///
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/// Can be computed by subtracting encoded call size from raw transaction size.
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pub const TX_EXTRA_BYTES: u32 = 103;
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/// Maximal size (in bytes) of encoded (using `Encode::encode()`) account id.
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pub const MAXIMAL_ENCODED_ACCOUNT_ID_SIZE: u32 = 32;
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/// Maximal weight of single Rialto block.
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///
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/// This represents two seconds of compute assuming a target block time of six seconds.
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pub const MAXIMUM_BLOCK_WEIGHT: Weight = 2 * WEIGHT_PER_SECOND;
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/// Represents the average portion of a block's weight that will be used by an
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/// `on_initialize()` runtime call.
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pub const AVERAGE_ON_INITIALIZE_RATIO: Perbill = Perbill::from_percent(10);
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/// Represents the portion of a block that will be used by Normal extrinsics.
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pub const NORMAL_DISPATCH_RATIO: Perbill = Perbill::from_percent(75);
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/// Maximal number of unrewarded relayer entries at inbound lane.
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pub const MAX_UNREWARDED_RELAYER_ENTRIES_AT_INBOUND_LANE: MessageNonce = 128;
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/// Maximal number of unconfirmed messages at inbound lane.
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pub const MAX_UNCONFIRMED_MESSAGES_AT_INBOUND_LANE: MessageNonce = 128;
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/// Weight of single regular message delivery transaction on Rialto chain.
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///
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/// This value is a result of `pallet_bridge_messages::Pallet::receive_messages_proof_weight()` call
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/// for the case when single message of `pallet_bridge_messages::EXPECTED_DEFAULT_MESSAGE_LENGTH` bytes is delivered.
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/// The message must have dispatch weight set to zero. The result then must be rounded up to account
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/// possible future runtime upgrades.
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pub const DEFAULT_MESSAGE_DELIVERY_TX_WEIGHT: Weight = 1_000_000_000;
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/// Increase of delivery transaction weight on Rialto chain with every additional message byte.
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///
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/// This value is a result of `pallet_bridge_messages::WeightInfoExt::storage_proof_size_overhead(1)` call. The
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/// result then must be rounded up to account possible future runtime upgrades.
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pub const ADDITIONAL_MESSAGE_BYTE_DELIVERY_WEIGHT: Weight = 25_000;
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/// Maximal weight of single message delivery confirmation transaction on Rialto chain.
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///
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/// This value is a result of `pallet_bridge_messages::Pallet::receive_messages_delivery_proof` weight formula computation
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/// for the case when single message is confirmed. The result then must be rounded up to account possible future
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/// runtime upgrades.
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pub const MAX_SINGLE_MESSAGE_DELIVERY_CONFIRMATION_TX_WEIGHT: Weight = 2_000_000_000;
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/// The target length of a session (how often authorities change) on Rialto measured in of number of
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/// blocks.
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///
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/// Note that since this is a target sessions may change before/after this time depending on network
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/// conditions.
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pub const SESSION_LENGTH: BlockNumber = 4;
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/// Re-export `time_units` to make usage easier.
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pub use time_units::*;
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/// Human readable time units defined in terms of number of blocks.
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pub mod time_units {
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use super::BlockNumber;
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pub const MILLISECS_PER_BLOCK: u64 = 6000;
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pub const SLOT_DURATION: u64 = MILLISECS_PER_BLOCK;
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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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}
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/// Block number type used in Rialto.
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pub type BlockNumber = u32;
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/// Hash type used in Rialto.
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pub type Hash = <BlakeTwo256 as HasherT>::Out;
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/// The type of an object that can produce hashes on Rialto.
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pub type Hasher = BlakeTwo256;
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/// The header type used by Rialto.
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pub type Header = sp_runtime::generic::Header<BlockNumber, Hasher>;
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/// Alias to 512-bit hash when used in the context of a transaction signature on the chain.
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pub type Signature = MultiSignature;
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/// Some way of identifying an account on the chain. We intentionally make it equivalent
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/// to the public key of our transaction signing scheme.
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pub type AccountId = <<Signature as Verify>::Signer as IdentifyAccount>::AccountId;
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/// Public key of the chain account that may be used to verify signatures.
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pub type AccountSigner = MultiSigner;
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/// Balance of an account.
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pub type Balance = u128;
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/// Rialto chain.
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#[derive(RuntimeDebug)]
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pub struct Rialto;
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impl Chain for Rialto {
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type BlockNumber = BlockNumber;
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type Hash = Hash;
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type Hasher = Hasher;
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type Header = Header;
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}
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/// Convert a 256-bit hash into an AccountId.
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pub struct AccountIdConverter;
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impl Convert<sp_core::H256, AccountId> for AccountIdConverter {
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fn convert(hash: sp_core::H256) -> AccountId {
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hash.to_fixed_bytes().into()
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}
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}
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// We use this to get the account on Rialto (target) which is derived from Millau's (source)
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// account. We do this so we can fund the derived account on Rialto at Genesis to it can pay
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// transaction fees.
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//
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// The reason we can use the same `AccountId` type for both chains is because they share the same
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// development seed phrase.
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//
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// Note that this should only be used for testing.
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pub fn derive_account_from_millau_id(id: bp_runtime::SourceAccount<AccountId>) -> AccountId {
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let encoded_id = bp_runtime::derive_account_id(bp_runtime::MILLAU_BRIDGE_INSTANCE, id);
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AccountIdConverter::convert(encoded_id)
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}
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frame_support::parameter_types! {
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pub BlockLength: limits::BlockLength =
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limits::BlockLength::max_with_normal_ratio(5 * 1024 * 1024, NORMAL_DISPATCH_RATIO);
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pub BlockWeights: limits::BlockWeights = limits::BlockWeights::builder()
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// Allowance for Normal class
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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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// Allowance for Operational class
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.for_class(DispatchClass::Operational, |weights| {
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weights.max_total = Some(MAXIMUM_BLOCK_WEIGHT);
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// Extra reserved space for Operational class
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weights.reserved = Some(MAXIMUM_BLOCK_WEIGHT - NORMAL_DISPATCH_RATIO * MAXIMUM_BLOCK_WEIGHT);
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})
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// By default Mandatory class is not limited at all.
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// This parameter is used to derive maximal size of a single extrinsic.
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.avg_block_initialization(AVERAGE_ON_INITIALIZE_RATIO)
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.build_or_panic();
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}
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/// Get the maximum weight (compute time) that a Normal extrinsic on the Millau chain can use.
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pub fn max_extrinsic_weight() -> Weight {
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BlockWeights::get()
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.get(DispatchClass::Normal)
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.max_extrinsic
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.unwrap_or(Weight::MAX)
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}
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/// Get the maximum length in bytes that a Normal extrinsic on the Millau chain requires.
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pub fn max_extrinsic_size() -> u32 {
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*BlockLength::get().max.get(DispatchClass::Normal)
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}
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/// Name of the `RialtoFinalityApi::best_finalized` runtime method.
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pub const BEST_FINALIZED_RIALTO_HEADER_METHOD: &str = "RialtoFinalityApi_best_finalized";
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/// Name of the `ToRialtoOutboundLaneApi::estimate_message_delivery_and_dispatch_fee` runtime method.
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pub const TO_RIALTO_ESTIMATE_MESSAGE_FEE_METHOD: &str =
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"ToRialtoOutboundLaneApi_estimate_message_delivery_and_dispatch_fee";
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/// Name of the `ToRialtoOutboundLaneApi::messages_dispatch_weight` runtime method.
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pub const TO_RIALTO_MESSAGES_DISPATCH_WEIGHT_METHOD: &str = "ToRialtoOutboundLaneApi_messages_dispatch_weight";
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/// Name of the `ToRialtoOutboundLaneApi::latest_generated_nonce` runtime method.
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pub const TO_RIALTO_LATEST_GENERATED_NONCE_METHOD: &str = "ToRialtoOutboundLaneApi_latest_generated_nonce";
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/// Name of the `ToRialtoOutboundLaneApi::latest_received_nonce` runtime method.
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pub const TO_RIALTO_LATEST_RECEIVED_NONCE_METHOD: &str = "ToRialtoOutboundLaneApi_latest_received_nonce";
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/// Name of the `FromRialtoInboundLaneApi::latest_received_nonce` runtime method.
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pub const FROM_RIALTO_LATEST_RECEIVED_NONCE_METHOD: &str = "FromRialtoInboundLaneApi_latest_received_nonce";
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/// Name of the `FromRialtoInboundLaneApi::latest_onfirmed_nonce` runtime method.
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pub const FROM_RIALTO_LATEST_CONFIRMED_NONCE_METHOD: &str = "FromRialtoInboundLaneApi_latest_confirmed_nonce";
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/// Name of the `FromRialtoInboundLaneApi::unrewarded_relayers_state` runtime method.
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pub const FROM_RIALTO_UNREWARDED_RELAYERS_STATE: &str = "FromRialtoInboundLaneApi_unrewarded_relayers_state";
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sp_api::decl_runtime_apis! {
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/// API for querying information about Rialto headers from the Bridge Pallet instance.
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///
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/// This API is implemented by runtimes that are bridging with the Rialto chain, not the
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/// Rialto runtime itself.
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pub trait RialtoHeaderApi {
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/// Returns number and hash of the best blocks known to the bridge module.
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///
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/// Will return multiple headers if there are many headers at the same "best" height.
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///
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/// The caller should only submit an `import_header` transaction that makes
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/// (or leads to making) other header the best one.
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fn best_blocks() -> Vec<(BlockNumber, Hash)>;
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/// Returns number and hash of the best finalized block known to the bridge module.
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fn finalized_block() -> (BlockNumber, Hash);
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/// Returns numbers and hashes of headers that require finality proofs.
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///
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/// An empty response means that there are no headers which currently require a
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/// finality proof.
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fn incomplete_headers() -> Vec<(BlockNumber, Hash)>;
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/// Returns true if the header is known to the runtime.
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fn is_known_block(hash: Hash) -> bool;
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/// Returns true if the header is considered finalized by the runtime.
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fn is_finalized_block(hash: Hash) -> bool;
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}
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/// API for querying information about the finalized Rialto headers.
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///
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/// This API is implemented by runtimes that are bridging with the Rialto chain, not the
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/// Millau runtime itself.
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pub trait RialtoFinalityApi {
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/// Returns number and hash of the best finalized header known to the bridge module.
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fn best_finalized() -> (BlockNumber, Hash);
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/// Returns true if the header is known to the runtime.
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fn is_known_header(hash: Hash) -> bool;
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}
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/// Outbound message lane API for messages that are sent to Rialto chain.
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///
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/// This API is implemented by runtimes that are sending messages to Rialto chain, not the
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/// Rialto runtime itself.
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pub trait ToRialtoOutboundLaneApi<OutboundMessageFee: Parameter, OutboundPayload: Parameter> {
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/// Estimate message delivery and dispatch fee that needs to be paid by the sender on
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/// this chain.
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///
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/// Returns `None` if message is too expensive to be sent to Rialto from this chain.
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///
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/// Please keep in mind that this method returns lowest message fee required for message
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/// to be accepted to the lane. It may be good idea to pay a bit over this price to account
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/// future exchange rate changes and guarantee that relayer would deliver your message
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/// to the target chain.
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fn estimate_message_delivery_and_dispatch_fee(
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lane_id: LaneId,
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payload: OutboundPayload,
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) -> Option<OutboundMessageFee>;
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/// Returns total dispatch weight and encoded payload size of all messages in given inclusive range.
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///
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/// If some (or all) messages are missing from the storage, they'll also will
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/// be missing from the resulting vector. The vector is ordered by the nonce.
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fn messages_dispatch_weight(
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lane: LaneId,
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begin: MessageNonce,
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end: MessageNonce,
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) -> Vec<(MessageNonce, Weight, u32)>;
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/// Returns nonce of the latest message, received by bridged chain.
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fn latest_received_nonce(lane: LaneId) -> MessageNonce;
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/// Returns nonce of the latest message, generated by given lane.
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fn latest_generated_nonce(lane: LaneId) -> MessageNonce;
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}
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/// Inbound message lane API for messages sent by Rialto chain.
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///
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/// This API is implemented by runtimes that are receiving messages from Rialto chain, not the
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/// Rialto runtime itself.
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pub trait FromRialtoInboundLaneApi {
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/// Returns nonce of the latest message, received by given lane.
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fn latest_received_nonce(lane: LaneId) -> MessageNonce;
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/// Nonce of latest message that has been confirmed to the bridged chain.
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fn latest_confirmed_nonce(lane: LaneId) -> MessageNonce;
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/// State of the unrewarded relayers set at given lane.
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fn unrewarded_relayers_state(lane: LaneId) -> UnrewardedRelayersState;
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use sp_runtime::codec::Encode;
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#[test]
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fn maximal_account_size_does_not_overflow_constant() {
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assert!(
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MAXIMAL_ENCODED_ACCOUNT_ID_SIZE as usize >= AccountId::default().encode().len(),
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"Actual maximal size of encoded AccountId ({}) overflows expected ({})",
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AccountId::default().encode().len(),
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MAXIMAL_ENCODED_ACCOUNT_ID_SIZE,
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);
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}
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}
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Reference in New Issue
Block a user