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https://github.com/pezkuwichain/pezkuwi-subxt.git
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4105575794
* use runtime:: prefix for message-lane pallet traces * renamed message-lane (module and primitives) folder into messages * replace "message lane" with "messages" where appropriate
204 lines
7.1 KiB
Rust
204 lines
7.1 KiB
Rust
// Copyright 2019-2020 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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//! Everything about outgoing messages sending.
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use bp_messages::{LaneId, MessageData, MessageNonce, OutboundLaneData};
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/// Outbound lane storage.
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pub trait OutboundLaneStorage {
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/// Delivery and dispatch fee type on source chain.
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type MessageFee;
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/// Lane id.
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fn id(&self) -> LaneId;
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/// Get lane data from the storage.
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fn data(&self) -> OutboundLaneData;
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/// Update lane data in the storage.
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fn set_data(&mut self, data: OutboundLaneData);
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/// Returns saved outbound message payload.
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#[cfg(test)]
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fn message(&self, nonce: &MessageNonce) -> Option<MessageData<Self::MessageFee>>;
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/// Save outbound message in the storage.
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fn save_message(&mut self, nonce: MessageNonce, message_data: MessageData<Self::MessageFee>);
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/// Remove outbound message from the storage.
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fn remove_message(&mut self, nonce: &MessageNonce);
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}
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/// Outbound messages lane.
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pub struct OutboundLane<S> {
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storage: S,
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}
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impl<S: OutboundLaneStorage> OutboundLane<S> {
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/// Create new inbound lane backed by given storage.
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pub fn new(storage: S) -> Self {
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OutboundLane { storage }
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}
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/// Get this lane data.
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pub fn data(&self) -> OutboundLaneData {
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self.storage.data()
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}
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/// Send message over lane.
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///
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/// Returns new message nonce.
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pub fn send_message(&mut self, message_data: MessageData<S::MessageFee>) -> MessageNonce {
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let mut data = self.storage.data();
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let nonce = data.latest_generated_nonce + 1;
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data.latest_generated_nonce = nonce;
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self.storage.save_message(nonce, message_data);
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self.storage.set_data(data);
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nonce
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}
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/// Confirm messages delivery.
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///
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/// Returns `None` if confirmation is wrong/duplicate.
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/// Returns `Some` with inclusive ranges of message nonces that have been received.
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pub fn confirm_delivery(&mut self, latest_received_nonce: MessageNonce) -> Option<(MessageNonce, MessageNonce)> {
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let mut data = self.storage.data();
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if latest_received_nonce <= data.latest_received_nonce || latest_received_nonce > data.latest_generated_nonce {
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return None;
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}
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let prev_latest_received_nonce = data.latest_received_nonce;
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data.latest_received_nonce = latest_received_nonce;
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self.storage.set_data(data);
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Some((prev_latest_received_nonce + 1, latest_received_nonce))
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}
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/// Prune at most `max_messages_to_prune` already received messages.
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///
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/// Returns number of pruned messages.
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pub fn prune_messages(&mut self, max_messages_to_prune: MessageNonce) -> MessageNonce {
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let mut pruned_messages = 0;
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let mut anything_changed = false;
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let mut data = self.storage.data();
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while pruned_messages < max_messages_to_prune && data.oldest_unpruned_nonce <= data.latest_received_nonce {
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self.storage.remove_message(&data.oldest_unpruned_nonce);
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anything_changed = true;
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pruned_messages += 1;
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data.oldest_unpruned_nonce += 1;
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}
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if anything_changed {
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self.storage.set_data(data);
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}
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pruned_messages
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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 crate::{
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mock::{message_data, run_test, TestRuntime, REGULAR_PAYLOAD, TEST_LANE_ID},
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outbound_lane,
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};
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#[test]
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fn send_message_works() {
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run_test(|| {
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let mut lane = outbound_lane::<TestRuntime, _>(TEST_LANE_ID);
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assert_eq!(lane.storage.data().latest_generated_nonce, 0);
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assert_eq!(lane.send_message(message_data(REGULAR_PAYLOAD)), 1);
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assert!(lane.storage.message(&1).is_some());
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assert_eq!(lane.storage.data().latest_generated_nonce, 1);
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});
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}
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#[test]
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fn confirm_delivery_works() {
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run_test(|| {
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let mut lane = outbound_lane::<TestRuntime, _>(TEST_LANE_ID);
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assert_eq!(lane.send_message(message_data(REGULAR_PAYLOAD)), 1);
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assert_eq!(lane.send_message(message_data(REGULAR_PAYLOAD)), 2);
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assert_eq!(lane.send_message(message_data(REGULAR_PAYLOAD)), 3);
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 0);
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assert_eq!(lane.confirm_delivery(3), Some((1, 3)));
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 3);
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});
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}
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#[test]
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fn confirm_delivery_rejects_nonce_lesser_than_latest_received() {
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run_test(|| {
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let mut lane = outbound_lane::<TestRuntime, _>(TEST_LANE_ID);
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lane.send_message(message_data(REGULAR_PAYLOAD));
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lane.send_message(message_data(REGULAR_PAYLOAD));
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lane.send_message(message_data(REGULAR_PAYLOAD));
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 0);
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assert_eq!(lane.confirm_delivery(3), Some((1, 3)));
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assert_eq!(lane.confirm_delivery(3), None);
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 3);
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assert_eq!(lane.confirm_delivery(2), None);
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 3);
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});
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}
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#[test]
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fn confirm_delivery_rejects_nonce_larger_than_last_generated() {
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run_test(|| {
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let mut lane = outbound_lane::<TestRuntime, _>(TEST_LANE_ID);
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lane.send_message(message_data(REGULAR_PAYLOAD));
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lane.send_message(message_data(REGULAR_PAYLOAD));
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lane.send_message(message_data(REGULAR_PAYLOAD));
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 0);
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assert_eq!(lane.confirm_delivery(10), None);
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assert_eq!(lane.storage.data().latest_generated_nonce, 3);
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assert_eq!(lane.storage.data().latest_received_nonce, 0);
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});
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}
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#[test]
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fn prune_messages_works() {
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run_test(|| {
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let mut lane = outbound_lane::<TestRuntime, _>(TEST_LANE_ID);
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// when lane is empty, nothing is pruned
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assert_eq!(lane.prune_messages(100), 0);
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assert_eq!(lane.storage.data().oldest_unpruned_nonce, 1);
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// when nothing is confirmed, nothing is pruned
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lane.send_message(message_data(REGULAR_PAYLOAD));
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lane.send_message(message_data(REGULAR_PAYLOAD));
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lane.send_message(message_data(REGULAR_PAYLOAD));
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assert_eq!(lane.prune_messages(100), 0);
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assert_eq!(lane.storage.data().oldest_unpruned_nonce, 1);
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// after confirmation, some messages are received
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assert_eq!(lane.confirm_delivery(2), Some((1, 2)));
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assert_eq!(lane.prune_messages(100), 2);
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assert_eq!(lane.storage.data().oldest_unpruned_nonce, 3);
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// after last message is confirmed, everything is pruned
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assert_eq!(lane.confirm_delivery(3), Some((3, 3)));
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assert_eq!(lane.prune_messages(100), 1);
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assert_eq!(lane.storage.data().oldest_unpruned_nonce, 4);
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});
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}
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}
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