mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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feefc34567
23dda62 Rococo <> Wococo messages relay (#1030) bcde21d Update the wasm builder to substrate master (#1029) a8318ce Make target signer optional when sending message. (#1018) f8602e1 Fix insufficient balance when send message. (#1020) d95c0a7 greedy relayer don't need message dispatch to be prepaid if dispatch is supposed to be paid at the target chain (#1016) ad5876f Update types. (#1027) 116cbbc CI: fix starting the pipeline (#1022) 7e0fadd Add temporary `canary` job (#1019) 6787091 Update types to contain dispatch_fee_payment (#1017) 03f79ad Allow Root to assume SourceAccount. (#1011) 372d019 Return dispatch_fee_payment from message details RPC (#1014) 604eb1c Relay basic single-bit message dispatch results back to the source chain (#935) bf52fff Use plain source_queue view when selecting nonces for delivery (#1010) fc5cf7d pay dispatch fee at target chain (#911) 1e35477 Bump Substrate to `286d7ce` (#1006) 7ad07b3 Add --only-mandatory-headers mode (#1004) 5351dc9 Messages relayer operating mode (#995) 9bc29a7 Rococo <> Wococo relayer balance guard (#998) bc17341 rename messages_dispatch_weight -> message_details (#996) 95be244 Bump Rococo and Wococo spec versions (#999) c35567b Move ChainWithBalances::NativeBalance -> Chain::Balance (#990) 1bfece1 Fix some nits (#988) 334ea0f Increase pause before starting relays again (#989) 7fb8248 Fix clippy in test code (#993) d60ae50 fix clippy issues (#991) 75ca813 Make sure GRANDPA shares state with RPC. (#987) da2a38a Bump Substrate (#986) 5a9862f Update submit finality proof weight formula (#981) 69df513 Flag for rejecting all outbound messages (#982) 14d0506 Add script to setup bench machine. (#984) e74e8ab Move CI from GitHub Actions to GitLab (#814) c5ca5dd Custom justification verification (#979) 643f10d Always run on-demand headers relay in complex relay (#975) a35b0ef Add JSON type definitions for Rococo<>Wococo bridge (#977) 0eb83f2 Update cargo.deny (#980) e1d1f4c Bump Rococo/Wococo spec_version (#976) deac90d increase pause before starting relays (#974) 68d6d79 Revert to use InspectCmd, bump substrate `6bef4f4` (#966) 66e1508 Avoid hashing headers twice in verify_justification (#973) a31844f Bump `environmental` dependency (#972) 2a4c29a in auto-relays keep trying to connect to nodes until connection is established (#971) 0e767b3 removed stray file (#969) b9545dc Serve multiple lanes with single complex relay instance (#964) 73419f4 Correct type error (#968) bac256f Start finality relay spec-version guards for Rococo <> Wococo finality relays (#965) bfd7037 pass source and target chain ids to account_ownership_proof (#963) 8436073 Upstream changes from Polkadot repo (#961) e58d851 Increase account endowment amount (#960) git-subtree-dir: bridges git-subtree-split: 23dda6248236b27f20d76cbedc30e189cc6f736c
391 lines
13 KiB
Rust
391 lines
13 KiB
Rust
// 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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//! Primitives of messages module.
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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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// Generated by `DecodeLimit::decode_with_depth_limit`
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#![allow(clippy::unnecessary_mut_passed)]
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use bitvec::prelude::*;
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use bp_runtime::messages::DispatchFeePayment;
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use codec::{Decode, Encode};
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use frame_support::RuntimeDebug;
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use sp_std::{collections::vec_deque::VecDeque, prelude::*};
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pub mod source_chain;
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pub mod target_chain;
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// Weight is reexported to avoid additional frame-support dependencies in related crates.
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pub use frame_support::weights::Weight;
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/// Messages pallet operating mode.
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#[derive(Encode, Decode, Clone, Copy, PartialEq, Eq, RuntimeDebug)]
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#[cfg_attr(feature = "std", derive(serde::Serialize, serde::Deserialize))]
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pub enum OperatingMode {
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/// Normal mode, when all operations are allowed.
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Normal,
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/// The pallet is not accepting outbound messages. Inbound messages and receival proofs
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/// are still accepted.
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///
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/// This mode may be used e.g. when bridged chain expects upgrade. Then to avoid dispatch
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/// failures, the pallet owner may stop accepting new messages, while continuing to deliver
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/// queued messages to the bridged chain. Once upgrade is completed, the mode may be switched
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/// back to `Normal`.
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RejectingOutboundMessages,
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/// The pallet is halted. All operations (except operating mode change) are prohibited.
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Halted,
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}
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impl Default for OperatingMode {
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fn default() -> Self {
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OperatingMode::Normal
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}
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}
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/// Messages pallet parameter.
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pub trait Parameter: frame_support::Parameter {
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/// Save parameter value in the runtime storage.
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fn save(&self);
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}
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impl Parameter for () {
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fn save(&self) {}
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}
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/// Lane identifier.
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pub type LaneId = [u8; 4];
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/// Message nonce. Valid messages will never have 0 nonce.
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pub type MessageNonce = u64;
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/// Message id as a tuple.
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pub type MessageId = (LaneId, MessageNonce);
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/// Opaque message payload. We only decode this payload when it is dispatched.
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pub type MessagePayload = Vec<u8>;
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/// Message key (unique message identifier) as it is stored in the storage.
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#[derive(Encode, Decode, Clone, PartialEq, Eq, RuntimeDebug)]
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pub struct MessageKey {
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/// ID of the message lane.
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pub lane_id: LaneId,
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/// Message nonce.
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pub nonce: MessageNonce,
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}
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/// Message data as it is stored in the storage.
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#[derive(Encode, Decode, Clone, PartialEq, Eq, RuntimeDebug)]
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pub struct MessageData<Fee> {
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/// Message payload.
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pub payload: MessagePayload,
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/// Message delivery and dispatch fee, paid by the submitter.
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pub fee: Fee,
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}
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/// Message as it is stored in the storage.
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#[derive(Encode, Decode, Clone, PartialEq, Eq, RuntimeDebug)]
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pub struct Message<Fee> {
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/// Message key.
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pub key: MessageKey,
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/// Message data.
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pub data: MessageData<Fee>,
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}
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/// Inbound lane data.
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#[derive(Encode, Decode, Clone, RuntimeDebug, PartialEq, Eq)]
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pub struct InboundLaneData<RelayerId> {
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/// Identifiers of relayers and messages that they have delivered to this lane (ordered by message nonce).
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///
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/// This serves as a helper storage item, to allow the source chain to easily pay rewards
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/// to the relayers who succesfuly delivered messages to the target chain (inbound lane).
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///
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/// It is guaranteed to have at most N entries, where N is configured at the module level.
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/// If there are N entries in this vec, then:
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/// 1) all incoming messages are rejected if they're missing corresponding `proof-of(outbound-lane.state)`;
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/// 2) all incoming messages are rejected if `proof-of(outbound-lane.state).last_delivered_nonce` is
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/// equal to `self.last_confirmed_nonce`.
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/// Given what is said above, all nonces in this queue are in range:
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/// `(self.last_confirmed_nonce; self.last_delivered_nonce()]`.
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///
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/// When a relayer sends a single message, both of MessageNonces are the same.
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/// When relayer sends messages in a batch, the first arg is the lowest nonce, second arg the highest nonce.
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/// Multiple dispatches from the same relayer are allowed.
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pub relayers: VecDeque<UnrewardedRelayer<RelayerId>>,
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/// Nonce of the last message that
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/// a) has been delivered to the target (this) chain and
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/// b) the delivery has been confirmed on the source chain
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///
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/// that the target chain knows of.
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///
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/// This value is updated indirectly when an `OutboundLane` state of the source
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/// chain is received alongside with new messages delivery.
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pub last_confirmed_nonce: MessageNonce,
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}
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impl<RelayerId> Default for InboundLaneData<RelayerId> {
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fn default() -> Self {
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InboundLaneData {
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relayers: VecDeque::new(),
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last_confirmed_nonce: 0,
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}
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}
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}
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impl<RelayerId> InboundLaneData<RelayerId> {
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/// Returns approximate size of the struct, given number of entries in the `relayers` set and
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/// size of each entry.
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///
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/// Returns `None` if size overflows `u32` limits.
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pub fn encoded_size_hint(relayer_id_encoded_size: u32, relayers_entries: u32, messages_count: u32) -> Option<u32> {
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let message_nonce_size = 8;
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let relayers_entry_size = relayer_id_encoded_size.checked_add(2 * message_nonce_size)?;
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let relayers_size = relayers_entries.checked_mul(relayers_entry_size)?;
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let dispatch_results_per_byte = 8;
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let dispatch_result_size = sp_std::cmp::max(relayers_entries, messages_count / dispatch_results_per_byte);
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relayers_size
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.checked_add(message_nonce_size)
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.and_then(|result| result.checked_add(dispatch_result_size))
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}
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/// Nonce of the last message that has been delivered to this (target) chain.
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pub fn last_delivered_nonce(&self) -> MessageNonce {
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self.relayers
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.back()
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.map(|entry| entry.messages.end)
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.unwrap_or(self.last_confirmed_nonce)
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}
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}
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/// Message details, returned by runtime APIs.
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#[derive(Clone, Encode, Decode, RuntimeDebug, PartialEq, Eq)]
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pub struct MessageDetails<OutboundMessageFee> {
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/// Nonce assigned to the message.
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pub nonce: MessageNonce,
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/// Message dispatch weight, declared by the submitter.
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pub dispatch_weight: Weight,
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/// Size of the encoded message.
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pub size: u32,
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/// Delivery+dispatch fee paid by the message submitter at the source chain.
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pub delivery_and_dispatch_fee: OutboundMessageFee,
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/// Where the fee for dispatching message is paid?
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pub dispatch_fee_payment: DispatchFeePayment,
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}
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/// Bit vector of message dispatch results.
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pub type DispatchResultsBitVec = BitVec<Msb0, u8>;
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/// Unrewarded relayer entry stored in the inbound lane data.
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///
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/// This struct represents a continuous range of messages that have been delivered by the same relayer
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/// and whose confirmations are still pending.
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#[derive(Encode, Decode, Clone, RuntimeDebug, PartialEq, Eq)]
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pub struct UnrewardedRelayer<RelayerId> {
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/// Identifier of the relayer.
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pub relayer: RelayerId,
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/// Messages range, delivered by this relayer.
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pub messages: DeliveredMessages,
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}
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/// Delivered messages with their dispatch result.
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#[derive(Clone, Default, Encode, Decode, RuntimeDebug, PartialEq, Eq)]
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pub struct DeliveredMessages {
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/// Nonce of the first message that has been delivered (inclusive).
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pub begin: MessageNonce,
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/// Nonce of the last message that has been delivered (inclusive).
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pub end: MessageNonce,
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/// Dispatch result (`false`/`true`), returned by the message dispatcher for every
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/// message in the `[begin; end]` range. See `dispatch_result` field of the
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/// `bp_runtime::messages::MessageDispatchResult` structure for more information.
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pub dispatch_results: DispatchResultsBitVec,
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}
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impl DeliveredMessages {
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/// Create new `DeliveredMessages` struct that confirms delivery of single nonce with given dispatch result.
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pub fn new(nonce: MessageNonce, dispatch_result: bool) -> Self {
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DeliveredMessages {
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begin: nonce,
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end: nonce,
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dispatch_results: bitvec![Msb0, u8; if dispatch_result { 1 } else { 0 }],
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}
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}
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/// Note new dispatched message.
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pub fn note_dispatched_message(&mut self, dispatch_result: bool) {
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self.end += 1;
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self.dispatch_results.push(dispatch_result);
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}
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/// Returns true if delivered messages contain message with given nonce.
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pub fn contains_message(&self, nonce: MessageNonce) -> bool {
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(self.begin..=self.end).contains(&nonce)
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}
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/// Get dispatch result flag by message nonce.
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///
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/// Dispatch result flag must be interpreted using the knowledge of dispatch mechanism
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/// at the target chain. See `dispatch_result` field of the
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/// `bp_runtime::messages::MessageDispatchResult` structure for more information.
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///
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/// Panics if message nonce is not in the `begin..=end` range. Typically you'll first
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/// check if message is within the range by calling `contains_message`.
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pub fn message_dispatch_result(&self, nonce: MessageNonce) -> bool {
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const INVALID_NONCE: &str = "Invalid nonce used to index dispatch_results";
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let index = nonce.checked_sub(self.begin).expect(INVALID_NONCE) as usize;
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*self.dispatch_results.get(index).expect(INVALID_NONCE)
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}
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}
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/// Gist of `InboundLaneData::relayers` field used by runtime APIs.
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#[derive(Clone, Default, Encode, Decode, RuntimeDebug, PartialEq, Eq)]
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pub struct UnrewardedRelayersState {
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/// Number of entries in the `InboundLaneData::relayers` set.
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pub unrewarded_relayer_entries: MessageNonce,
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/// Number of messages in the oldest entry of `InboundLaneData::relayers`. This is the
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/// minimal number of reward proofs required to push out this entry from the set.
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pub messages_in_oldest_entry: MessageNonce,
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/// Total number of messages in the relayers vector.
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pub total_messages: MessageNonce,
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}
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/// Outbound lane data.
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#[derive(Encode, Decode, Clone, RuntimeDebug, PartialEq, Eq)]
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pub struct OutboundLaneData {
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/// Nonce of oldest message that we haven't yet pruned. May point to not-yet-generated message if
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/// all sent messages are already pruned.
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pub oldest_unpruned_nonce: MessageNonce,
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/// Nonce of latest message, received by bridged chain.
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pub latest_received_nonce: MessageNonce,
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/// Nonce of latest message, generated by us.
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pub latest_generated_nonce: MessageNonce,
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}
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impl Default for OutboundLaneData {
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fn default() -> Self {
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OutboundLaneData {
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// it is 1 because we're pruning everything in [oldest_unpruned_nonce; latest_received_nonce]
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oldest_unpruned_nonce: 1,
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latest_received_nonce: 0,
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latest_generated_nonce: 0,
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}
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}
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}
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/// Returns total number of messages in the `InboundLaneData::relayers` vector.
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///
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/// Returns `None` if there are more messages that `MessageNonce` may fit (i.e. `MessageNonce + 1`).
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pub fn total_unrewarded_messages<RelayerId>(relayers: &VecDeque<UnrewardedRelayer<RelayerId>>) -> Option<MessageNonce> {
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match (relayers.front(), relayers.back()) {
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(Some(front), Some(back)) => {
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if let Some(difference) = back.messages.end.checked_sub(front.messages.begin) {
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difference.checked_add(1)
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} else {
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Some(0)
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}
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}
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_ => Some(0),
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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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#[test]
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fn total_unrewarded_messages_does_not_overflow() {
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assert_eq!(
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total_unrewarded_messages(
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&vec![
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UnrewardedRelayer {
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relayer: 1,
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messages: DeliveredMessages::new(0, true)
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},
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UnrewardedRelayer {
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relayer: 2,
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messages: DeliveredMessages::new(MessageNonce::MAX, true)
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},
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]
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.into_iter()
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.collect()
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),
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None,
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);
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}
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#[test]
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fn inbound_lane_data_returns_correct_hint() {
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let test_cases = vec![
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// single relayer, multiple messages
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(1, 128u8),
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// multiple relayers, single message per relayer
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(128u8, 128u8),
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// several messages per relayer
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(13u8, 128u8),
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];
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for (relayer_entries, messages_count) in test_cases {
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let expected_size = InboundLaneData::<u8>::encoded_size_hint(1, relayer_entries as _, messages_count as _);
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let actual_size = InboundLaneData {
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relayers: (1u8..=relayer_entries)
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.map(|i| {
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let mut entry = UnrewardedRelayer {
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relayer: i,
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messages: DeliveredMessages::new(i as _, true),
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};
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entry.messages.dispatch_results = bitvec![
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Msb0, u8;
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1;
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(messages_count / relayer_entries) as _
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];
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entry
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})
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.collect(),
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last_confirmed_nonce: messages_count as _,
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}
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.encode()
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.len();
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let difference = (expected_size.unwrap() as f64 - actual_size as f64).abs();
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assert!(
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difference / (std::cmp::min(actual_size, expected_size.unwrap() as usize) as f64) < 0.1,
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"Too large difference between actual ({}) and expected ({:?}) inbound lane data size. Test case: {}+{}",
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actual_size,
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expected_size,
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relayer_entries,
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messages_count,
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);
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}
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}
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#[test]
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fn message_dispatch_result_works() {
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let delivered_messages = DeliveredMessages {
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begin: 100,
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end: 150,
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dispatch_results: bitvec![Msb0, u8; 1; 151],
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};
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assert!(!delivered_messages.contains_message(99));
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assert!(delivered_messages.contains_message(100));
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assert!(delivered_messages.contains_message(150));
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assert!(!delivered_messages.contains_message(151));
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assert!(delivered_messages.message_dispatch_result(125));
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}
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}
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