mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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7b56ab15b4
* Run cargo fmt on the whole code base * Second run * Add CI check * Fix compilation * More unnecessary braces * Handle weights * Use --all * Use correct attributes... * Fix UI tests * AHHHHHHHHH * 🤦 * Docs * Fix compilation * 🤷 * Please stop * 🤦 x 2 * More * make rustfmt.toml consistent with polkadot Co-authored-by: André Silva <andrerfosilva@gmail.com>
177 lines
5.7 KiB
Rust
177 lines
5.7 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2018-2021 Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// This program 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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// This program 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 this program. If not, see <https://www.gnu.org/licenses/>.
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use futures::prelude::*;
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use libp2p::PeerId;
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use rand::{
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distributions::{Distribution, Uniform, WeightedIndex},
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seq::IteratorRandom,
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};
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use sc_peerset::{
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DropReason, IncomingIndex, Message, Peerset, PeersetConfig, ReputationChange, SetConfig, SetId,
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};
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use std::{
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collections::{HashMap, HashSet},
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pin::Pin,
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task::Poll,
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};
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#[test]
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fn run() {
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for _ in 0..50 {
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test_once();
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}
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}
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fn test_once() {
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// PRNG to use.
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let mut rng = rand::thread_rng();
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// Nodes that the peerset knows about.
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let mut known_nodes = HashSet::<PeerId>::new();
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// Nodes that we have reserved. Always a subset of `known_nodes`.
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let mut reserved_nodes = HashSet::<PeerId>::new();
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let (mut peerset, peerset_handle) = Peerset::from_config(PeersetConfig {
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sets: vec![SetConfig {
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bootnodes: (0..Uniform::new_inclusive(0, 4).sample(&mut rng))
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.map(|_| {
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let id = PeerId::random();
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known_nodes.insert(id.clone());
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id
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})
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.collect(),
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reserved_nodes: {
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(0..Uniform::new_inclusive(0, 2).sample(&mut rng))
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.map(|_| {
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let id = PeerId::random();
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known_nodes.insert(id.clone());
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reserved_nodes.insert(id.clone());
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id
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})
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.collect()
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},
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in_peers: Uniform::new_inclusive(0, 25).sample(&mut rng),
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out_peers: Uniform::new_inclusive(0, 25).sample(&mut rng),
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reserved_only: Uniform::new_inclusive(0, 10).sample(&mut rng) == 0,
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}],
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});
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futures::executor::block_on(futures::future::poll_fn(move |cx| {
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// List of nodes the user of `peerset` assumes it's connected to. Always a subset of
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// `known_nodes`.
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let mut connected_nodes = HashSet::<PeerId>::new();
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// List of nodes the user of `peerset` called `incoming` with and that haven't been
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// accepted or rejected yet.
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let mut incoming_nodes = HashMap::<IncomingIndex, PeerId>::new();
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// Next id for incoming connections.
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let mut next_incoming_id = IncomingIndex(0);
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// Perform a certain number of actions while checking that the state is consistent. If we
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// reach the end of the loop, the run has succeeded.
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for _ in 0..2500 {
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// Each of these weights corresponds to an action that we may perform.
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let action_weights = [150, 90, 90, 30, 30, 1, 1, 4, 4];
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match WeightedIndex::new(&action_weights).unwrap().sample(&mut rng) {
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// If we generate 0, poll the peerset.
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0 => match Stream::poll_next(Pin::new(&mut peerset), cx) {
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Poll::Ready(Some(Message::Connect { peer_id, .. })) => {
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if let Some(id) =
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incoming_nodes.iter().find(|(_, v)| **v == peer_id).map(|(&id, _)| id)
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{
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incoming_nodes.remove(&id);
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}
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assert!(connected_nodes.insert(peer_id));
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},
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Poll::Ready(Some(Message::Drop { peer_id, .. })) => {
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connected_nodes.remove(&peer_id);
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},
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Poll::Ready(Some(Message::Accept(n))) => {
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assert!(connected_nodes.insert(incoming_nodes.remove(&n).unwrap()))
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},
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Poll::Ready(Some(Message::Reject(n))) => {
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assert!(!connected_nodes.contains(&incoming_nodes.remove(&n).unwrap()))
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},
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Poll::Ready(None) => panic!(),
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Poll::Pending => {},
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},
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// If we generate 1, discover a new node.
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1 => {
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let new_id = PeerId::random();
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known_nodes.insert(new_id.clone());
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peerset.add_to_peers_set(SetId::from(0), new_id);
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},
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// If we generate 2, adjust a random reputation.
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2 =>
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if let Some(id) = known_nodes.iter().choose(&mut rng) {
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let val = Uniform::new_inclusive(i32::MIN, i32::MAX).sample(&mut rng);
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peerset_handle.report_peer(id.clone(), ReputationChange::new(val, ""));
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},
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// If we generate 3, disconnect from a random node.
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3 =>
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if let Some(id) = connected_nodes.iter().choose(&mut rng).cloned() {
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connected_nodes.remove(&id);
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peerset.dropped(SetId::from(0), id, DropReason::Unknown);
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},
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// If we generate 4, connect to a random node.
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4 => {
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if let Some(id) = known_nodes
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.iter()
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.filter(|n| {
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incoming_nodes.values().all(|m| m != *n) &&
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!connected_nodes.contains(*n)
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})
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.choose(&mut rng)
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{
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peerset.incoming(SetId::from(0), id.clone(), next_incoming_id.clone());
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incoming_nodes.insert(next_incoming_id.clone(), id.clone());
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next_incoming_id.0 += 1;
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}
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},
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// 5 and 6 are the reserved-only mode.
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5 => peerset_handle.set_reserved_only(SetId::from(0), true),
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6 => peerset_handle.set_reserved_only(SetId::from(0), false),
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// 7 and 8 are about switching a random node in or out of reserved mode.
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7 => {
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if let Some(id) =
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known_nodes.iter().filter(|n| !reserved_nodes.contains(*n)).choose(&mut rng)
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{
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peerset_handle.add_reserved_peer(SetId::from(0), id.clone());
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reserved_nodes.insert(id.clone());
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}
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},
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8 =>
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if let Some(id) = reserved_nodes.iter().choose(&mut rng).cloned() {
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reserved_nodes.remove(&id);
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peerset_handle.remove_reserved_peer(SetId::from(0), id);
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},
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_ => unreachable!(),
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}
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}
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Poll::Ready(())
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}));
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}
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