mirror of
https://github.com/fluencelabs/rust-libp2p
synced 2025-04-25 11:02:12 +00:00
* Adapt examples to async style loop * Adapt async style loop for chat.rs * Adapt async style loop for distributed-key-value-store.rs * Adapt async style loop for gossibsub-chat.rs * Adapt async style loop for ipfs-private.rs * Adapt ping to use async * Update tutorial crate to reflect new changes Co-authored-by: Max Inden <mail@max-inden.de>
253 lines
9.1 KiB
Rust
253 lines
9.1 KiB
Rust
// Copyright 20l9 Parity Technologies (UK) Ltd.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a
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// copy of this software and associated documentation files (the "Software"),
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// to deal in the Software without restriction, including without limitation
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// the rights to use, copy, modify, merge, publish, distribute, sublicense,
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// and/or sell copies of the Software, and to permit persons to whom the
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// Software is furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
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// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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// DEALINGS IN THE SOFTWARE.
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//! A basic key value store demonstrating libp2p and the mDNS and Kademlia protocols.
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//!
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//! 1. Using two terminal windows, start two instances. If you local network
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//! allows mDNS, they will automatically connect.
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//!
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//! 2. Type `PUT my-key my-value` in terminal one and hit return.
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//!
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//! 3. Type `GET my-key` in terminal two and hit return.
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//!
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//! 4. Close with Ctrl-c.
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//!
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//! You can also store provider records instead of key value records.
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//!
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//! 1. Using two terminal windows, start two instances. If you local network
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//! allows mDNS, they will automatically connect.
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//!
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//! 2. Type `PUT_PROVIDER my-key` in terminal one and hit return.
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//!
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//! 3. Type `GET_PROVIDERS my-key` in terminal two and hit return.
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//!
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//! 4. Close with Ctrl-c.
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use async_std::{io, task};
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use futures::{prelude::*, select};
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use libp2p::kad::record::store::MemoryStore;
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use libp2p::kad::{
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record::Key, AddProviderOk, Kademlia, KademliaEvent, PeerRecord, PutRecordOk, QueryResult,
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Quorum, Record,
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};
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use libp2p::{
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development_transport, identity,
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mdns::{Mdns, MdnsConfig, MdnsEvent},
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swarm::{NetworkBehaviourEventProcess, SwarmEvent},
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NetworkBehaviour, PeerId, Swarm,
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};
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use std::error::Error;
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#[async_std::main]
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async fn main() -> Result<(), Box<dyn Error>> {
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env_logger::init();
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// Create a random key for ourselves.
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let local_key = identity::Keypair::generate_ed25519();
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let local_peer_id = PeerId::from(local_key.public());
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// Set up a an encrypted DNS-enabled TCP Transport over the Mplex protocol.
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let transport = development_transport(local_key).await?;
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// We create a custom network behaviour that combines Kademlia and mDNS.
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#[derive(NetworkBehaviour)]
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#[behaviour(event_process = true)]
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struct MyBehaviour {
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kademlia: Kademlia<MemoryStore>,
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mdns: Mdns,
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}
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impl NetworkBehaviourEventProcess<MdnsEvent> for MyBehaviour {
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// Called when `mdns` produces an event.
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fn inject_event(&mut self, event: MdnsEvent) {
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if let MdnsEvent::Discovered(list) = event {
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for (peer_id, multiaddr) in list {
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self.kademlia.add_address(&peer_id, multiaddr);
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}
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}
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}
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}
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impl NetworkBehaviourEventProcess<KademliaEvent> for MyBehaviour {
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// Called when `kademlia` produces an event.
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fn inject_event(&mut self, message: KademliaEvent) {
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match message {
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KademliaEvent::OutboundQueryCompleted { result, .. } => match result {
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QueryResult::GetProviders(Ok(ok)) => {
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for peer in ok.providers {
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println!(
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"Peer {:?} provides key {:?}",
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peer,
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std::str::from_utf8(ok.key.as_ref()).unwrap()
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);
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}
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}
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QueryResult::GetProviders(Err(err)) => {
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eprintln!("Failed to get providers: {:?}", err);
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}
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QueryResult::GetRecord(Ok(ok)) => {
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for PeerRecord {
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record: Record { key, value, .. },
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..
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} in ok.records
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{
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println!(
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"Got record {:?} {:?}",
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std::str::from_utf8(key.as_ref()).unwrap(),
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std::str::from_utf8(&value).unwrap(),
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);
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}
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}
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QueryResult::GetRecord(Err(err)) => {
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eprintln!("Failed to get record: {:?}", err);
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}
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QueryResult::PutRecord(Ok(PutRecordOk { key })) => {
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println!(
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"Successfully put record {:?}",
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std::str::from_utf8(key.as_ref()).unwrap()
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);
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}
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QueryResult::PutRecord(Err(err)) => {
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eprintln!("Failed to put record: {:?}", err);
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}
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QueryResult::StartProviding(Ok(AddProviderOk { key })) => {
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println!(
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"Successfully put provider record {:?}",
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std::str::from_utf8(key.as_ref()).unwrap()
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);
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}
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QueryResult::StartProviding(Err(err)) => {
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eprintln!("Failed to put provider record: {:?}", err);
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}
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_ => {}
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},
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_ => {}
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}
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}
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}
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// Create a swarm to manage peers and events.
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let mut swarm = {
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// Create a Kademlia behaviour.
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let store = MemoryStore::new(local_peer_id);
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let kademlia = Kademlia::new(local_peer_id, store);
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let mdns = task::block_on(Mdns::new(MdnsConfig::default()))?;
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let behaviour = MyBehaviour { kademlia, mdns };
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Swarm::new(transport, behaviour, local_peer_id)
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};
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// Read full lines from stdin
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let mut stdin = io::BufReader::new(io::stdin()).lines().fuse();
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// Listen on all interfaces and whatever port the OS assigns.
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swarm.listen_on("/ip4/0.0.0.0/tcp/0".parse()?)?;
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// Kick it off.
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loop {
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select! {
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line = stdin.select_next_some() => handle_input_line(&mut swarm.behaviour_mut().kademlia, line.expect("Stdin not to close")),
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event = swarm.select_next_some() => match event {
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SwarmEvent::NewListenAddr { address, .. } => {
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println!("Listening in {:?}", address);
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},
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_ => {}
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}
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}
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}
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}
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fn handle_input_line(kademlia: &mut Kademlia<MemoryStore>, line: String) {
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let mut args = line.split(' ');
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match args.next() {
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Some("GET") => {
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let key = {
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match args.next() {
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Some(key) => Key::new(&key),
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None => {
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eprintln!("Expected key");
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return;
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}
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}
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};
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kademlia.get_record(&key, Quorum::One);
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}
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Some("GET_PROVIDERS") => {
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let key = {
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match args.next() {
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Some(key) => Key::new(&key),
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None => {
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eprintln!("Expected key");
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return;
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}
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}
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};
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kademlia.get_providers(key);
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}
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Some("PUT") => {
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let key = {
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match args.next() {
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Some(key) => Key::new(&key),
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None => {
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eprintln!("Expected key");
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return;
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}
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}
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};
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let value = {
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match args.next() {
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Some(value) => value.as_bytes().to_vec(),
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None => {
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eprintln!("Expected value");
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return;
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}
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}
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};
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let record = Record {
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key,
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value,
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publisher: None,
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expires: None,
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};
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kademlia
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.put_record(record, Quorum::One)
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.expect("Failed to store record locally.");
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}
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Some("PUT_PROVIDER") => {
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let key = {
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match args.next() {
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Some(key) => Key::new(&key),
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None => {
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eprintln!("Expected key");
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return;
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}
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}
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};
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kademlia
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.start_providing(key)
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.expect("Failed to start providing key");
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}
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_ => {
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eprintln!("expected GET, GET_PROVIDERS, PUT or PUT_PROVIDER");
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}
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}
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}
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