2020-09-22 14:53:52 +02:00
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// Copyright 2015-2020 Parity Technologies (UK) Ltd.
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// This file is part of OpenEthereum.
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2016-02-05 13:40:41 +01:00
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2020-09-22 14:53:52 +02:00
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// OpenEthereum is free software: you can redistribute it and/or modify
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2016-02-05 13:40:41 +01:00
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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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2020-09-22 14:53:52 +02:00
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// OpenEthereum is distributed in the hope that it will be useful,
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2016-02-05 13:40:41 +01:00
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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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2020-09-22 14:53:52 +02:00
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// along with OpenEthereum. If not, see <http://www.gnu.org/licenses/>.
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2016-02-05 13:40:41 +01:00
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2019-01-08 15:07:20 +01:00
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extern crate env_logger;
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2018-01-17 10:36:12 +01:00
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extern crate ethcore_io as io;
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extern crate ethcore_network;
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2018-03-05 11:56:35 +01:00
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extern crate ethcore_network_devp2p;
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2018-01-17 10:36:12 +01:00
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extern crate ethkey;
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2019-01-08 15:07:20 +01:00
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extern crate parity_bytes;
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extern crate parking_lot;
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2018-01-17 10:36:12 +01:00
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use ethcore_network::*;
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2018-03-05 11:56:35 +01:00
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use ethcore_network_devp2p::NetworkService;
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2020-08-05 06:08:03 +02:00
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use ethkey::{Generator, Random};
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2018-01-17 10:36:12 +01:00
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use io::TimerToken;
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2020-08-05 06:08:03 +02:00
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use parity_bytes::Bytes;
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use parking_lot::Mutex;
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use std::{
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sync::{
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atomic::{AtomicBool, Ordering as AtomicOrdering},
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Arc,
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},
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thread,
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time::*,
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};
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2016-01-24 18:53:54 +01:00
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pub struct TestProtocol {
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2020-08-05 06:08:03 +02:00
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drop_session: bool,
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pub packet: Mutex<Bytes>,
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pub got_timeout: AtomicBool,
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pub got_disconnect: AtomicBool,
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}
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impl TestProtocol {
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2020-08-05 06:08:03 +02:00
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pub fn new(drop_session: bool) -> Self {
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TestProtocol {
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packet: Mutex::new(Vec::new()),
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got_timeout: AtomicBool::new(false),
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got_disconnect: AtomicBool::new(false),
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drop_session: drop_session,
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}
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}
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/// Creates and register protocol with the network service
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pub fn register(service: &mut NetworkService, drop_session: bool) -> Arc<TestProtocol> {
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let handler = Arc::new(TestProtocol::new(drop_session));
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service
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.register_protocol(handler.clone(), *b"tst", &[(42u8, 1u8), (43u8, 1u8)])
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.expect("Error registering test protocol handler");
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handler
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}
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pub fn got_packet(&self) -> bool {
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self.packet.lock()[..] == b"hello"[..]
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}
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pub fn got_timeout(&self) -> bool {
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self.got_timeout.load(AtomicOrdering::Relaxed)
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}
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pub fn got_disconnect(&self) -> bool {
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self.got_disconnect.load(AtomicOrdering::Relaxed)
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}
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2016-01-24 18:53:54 +01:00
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}
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2016-07-11 17:02:42 +02:00
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impl NetworkProtocolHandler for TestProtocol {
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2020-07-29 10:36:15 +02:00
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fn initialize(&self, io: &dyn NetworkContext) {
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2020-08-05 06:08:03 +02:00
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io.register_timer(0, Duration::from_millis(10)).unwrap();
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}
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2020-07-29 10:36:15 +02:00
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fn read(&self, _io: &dyn NetworkContext, _peer: &PeerId, packet_id: u8, data: &[u8]) {
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2020-08-05 06:08:03 +02:00
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assert_eq!(packet_id, 33);
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self.packet.lock().extend(data);
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}
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2020-07-29 10:36:15 +02:00
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fn connected(&self, io: &dyn NetworkContext, peer: &PeerId) {
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2020-08-05 06:08:03 +02:00
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assert!(io.peer_client_version(*peer).to_string().contains("Parity"));
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if self.drop_session {
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io.disconnect_peer(*peer)
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} else {
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io.respond(33, "hello".to_owned().into_bytes()).unwrap();
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}
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}
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2020-07-29 10:36:15 +02:00
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fn disconnected(&self, _io: &dyn NetworkContext, _peer: &PeerId) {
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2020-08-05 06:08:03 +02:00
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self.got_disconnect.store(true, AtomicOrdering::Relaxed);
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}
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/// Timer function called after a timeout created with `NetworkContext::timeout`.
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2020-07-29 10:36:15 +02:00
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fn timeout(&self, _io: &dyn NetworkContext, timer: TimerToken) {
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2020-08-05 06:08:03 +02:00
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assert_eq!(timer, 0);
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self.got_timeout.store(true, AtomicOrdering::Relaxed);
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}
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2016-01-24 18:53:54 +01:00
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}
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#[test]
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2016-02-03 12:04:24 +01:00
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fn net_service() {
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2020-08-05 06:08:03 +02:00
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let service = NetworkService::new(NetworkConfiguration::new_local(), None)
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.expect("Error creating network service");
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service.start().unwrap();
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service
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.register_protocol(Arc::new(TestProtocol::new(false)), *b"myp", &[(1u8, 1u8)])
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.unwrap();
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2016-01-24 18:53:54 +01:00
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}
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2016-06-17 18:26:54 +02:00
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#[test]
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fn net_start_stop() {
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2020-08-05 06:08:03 +02:00
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let config = NetworkConfiguration::new_local();
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let service = NetworkService::new(config, None).unwrap();
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service.start().unwrap();
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service.stop();
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service.start().unwrap();
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2016-06-17 18:26:54 +02:00
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}
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2016-02-16 19:08:58 +01:00
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#[test]
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fn net_disconnect() {
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2020-08-05 06:08:03 +02:00
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let key1 = Random.generate().unwrap();
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let mut config1 = NetworkConfiguration::new_local();
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config1.use_secret = Some(key1.secret().clone());
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config1.boot_nodes = vec![];
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let mut service1 = NetworkService::new(config1, None).unwrap();
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service1.start().unwrap();
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let handler1 = TestProtocol::register(&mut service1, false);
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let mut config2 = NetworkConfiguration::new_local();
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config2.boot_nodes = vec![service1.local_url().unwrap()];
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let mut service2 = NetworkService::new(config2, None).unwrap();
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service2.start().unwrap();
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let handler2 = TestProtocol::register(&mut service2, true);
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while !(handler1.got_disconnect() && handler2.got_disconnect()) {
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thread::sleep(Duration::from_millis(50));
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}
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assert!(handler1.got_disconnect());
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assert!(handler2.got_disconnect());
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2016-02-16 19:08:58 +01:00
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}
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2016-01-24 18:53:54 +01:00
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#[test]
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2016-02-03 12:04:24 +01:00
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fn net_timeout() {
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2020-08-05 06:08:03 +02:00
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let config = NetworkConfiguration::new_local();
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let mut service = NetworkService::new(config, None).unwrap();
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service.start().unwrap();
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let handler = TestProtocol::register(&mut service, false);
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while !handler.got_timeout() {
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thread::sleep(Duration::from_millis(50));
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}
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2016-01-24 18:53:54 +01:00
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}
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