lunar-mining 2 лет назад
Родитель
Сommit
7cf5a1e081
1 измененных файлов с 0 добавлено и 761 удалено
  1. 0 761
      src/net/hosts.rs

+ 0 - 761
src/net/hosts.rs

@@ -1,761 +0,0 @@
-/* This file is part of DarkFi (https://dark.fi)
- *
- * Copyright (C) 2020-2023 Dyne.org foundation
- *
- * This program is free software: you can redistribute it and/or modify
- * it under the terms of the GNU Affero General Public License as
- * published by the Free Software Foundation, either version 3 of the
- * License, or (at your option) any later version.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
- * GNU Affero General Public License for more details.
- *
- * You should have received a copy of the GNU Affero General Public License
- * along with this program.  If not, see <https://www.gnu.org/licenses/>.
- */
-
-use std::{collections::HashSet, sync::Arc};
-
-use log::{debug, trace};
-use rand::{
-    prelude::{IteratorRandom, SliceRandom},
-    rngs::OsRng,
-};
-use smol::lock::RwLock;
-use url::Url;
-
-use super::{p2p::P2pPtr, settings::SettingsPtr};
-use crate::{
-    system::{Subscriber, SubscriberPtr, Subscription},
-    Error, Result,
-};
-
-/// Atomic pointer to hosts object
-pub type HostsPtr = Arc<Hosts>;
-
-// An array containing all possible local host strings
-// TODO: This could perhaps be more exhaustive?
-pub const LOCAL_HOST_STRS: [&str; 2] = ["localhost", "localhost.localdomain"];
-
-/// Manages a store of network addresses
-pub struct Hosts {
-    // Intermediary node list that is periodically probed and updated to whitelist.
-    pub greylist: RwLock<Vec<(Url, u64)>>,
-
-    // Recently seen nodes.
-    pub whitelist: RwLock<Vec<(Url, u64)>>,
-
-    /// Peers we reject from connecting
-    rejected: RwLock<HashSet<String>>,
-
-    /// Subscriber listening for store updates
-    store_subscriber: SubscriberPtr<usize>,
-
-    /// Pointer to configured P2P settings
-    settings: SettingsPtr,
-}
-
-impl Hosts {
-    /// Create a new hosts list>
-    pub fn new(settings: SettingsPtr) -> HostsPtr {
-        Arc::new(Self {
-            whitelist: RwLock::new(Vec::new()),
-            greylist: RwLock::new(Vec::new()),
-            rejected: RwLock::new(HashSet::new()),
-            store_subscriber: Subscriber::new(),
-            settings,
-        })
-    }
-
-    /// Loops through whitelist addresses to find an outbound address that we can
-    /// connect to. Check whether the address is valid by making sure it isn't
-    /// our own inbound address, then checks whether it is already connected
-    /// (exists) or connecting (pending).
-    /// Lastly adds matching address to the pending list.
-    pub async fn whitelist_fetch_address_with_lock(
-        &self,
-        p2p: P2pPtr,
-        transports: &[String],
-    ) -> Option<(Url, u64)> {
-        // Collect hosts
-        let mut hosts = vec![];
-
-        // If transport mixing is enabled, then for example we're allowed to
-        // use tor:// to connect to tcp:// and tor+tls:// to connect to tcp+tls://.
-        // However, **do not** mix tor:// and tcp+tls://, nor tor+tls:// and tcp://.
-        let transport_mixing = self.settings.transport_mixing;
-        macro_rules! mix_transport {
-            ($a:expr, $b:expr) => {
-                if transports.contains(&$a.to_string()) && transport_mixing {
-                    let mut a_to_b =
-                        self.whitelist_fetch_with_schemes(&[$b.to_string()], None).await;
-                    for (addr, last_seen) in a_to_b.iter_mut() {
-                        addr.set_scheme($a).unwrap();
-                        hosts.push((addr.clone(), last_seen.clone()));
-                    }
-                }
-            };
-        }
-        mix_transport!("tor", "tcp");
-        mix_transport!("tor+tls", "tcp+tls");
-        mix_transport!("nym", "tcp");
-        mix_transport!("nym+tls", "tcp+tls");
-
-        // And now the actual requested transports
-        for (addr, last_seen) in self.whitelist_fetch_with_schemes(transports, None).await {
-            hosts.push((addr, last_seen));
-        }
-
-        // Randomize hosts list. Do not try to connect in a deterministic order.
-        // This is healthier for multiple slots to not compete for the same addrs.
-        hosts.shuffle(&mut OsRng);
-
-        // Try to find an unused host in the set.
-        for (host, last_seen) in hosts.iter() {
-            // Check if we already have this connection established
-            if p2p.exists(host).await {
-                trace!(
-                    target: "net::hosts::whitelist_fetch_address_with_lock()",
-                    "Host '{}' exists so skipping",
-                    host
-                );
-                continue
-            }
-
-            // Check if we already have this configured as a manual peer
-            if self.settings.peers.contains(host) {
-                trace!(
-                    target: "net::hosts::whitelist_fetch_address_with_lock()",
-                    "Host '{}' configured as manual peer so skipping",
-                    host
-                );
-                continue
-            }
-
-            // Obtain a lock on this address to prevent duplicate connection
-            if !p2p.add_pending(host).await {
-                trace!(
-                    target: "net::hosts::whitelist_fetch_address_with_lock()",
-                    "Host '{}' pending so skipping",
-                    host
-                );
-                continue
-            }
-
-            trace!(
-                target: "net::hosts::whitelist_fetch_address_with_lock()",
-                "Found valid host '{}",
-                host
-            );
-            return Some((host.clone(), last_seen.clone()))
-        }
-
-        None
-    }
-
-    // Store the address in the whitelist if we don't have it.
-    // Otherwise, update the last_seen field.
-    // TODO: test the performance of this method. It might be costly.
-    pub async fn whitelist_store_or_update(&self, addr: &Url, last_seen: u64) -> Result<()> {
-        debug!(target: "net::hosts::whitelist_store_or_update()",
-        "hosts::whitelist_store_or_update() [START]");
-
-        if !self.whitelist_contains(addr).await {
-            self.whitelist_store(addr, last_seen).await;
-        } else {
-            let index = self.get_whitelist_index_at_addr(addr).await?;
-            self.whitelist_update_last_seen(addr, last_seen, index).await;
-        }
-        Ok(())
-    }
-
-    // Update the last_seen field for a Url on the whitelist.
-    pub async fn whitelist_update(&self, addr: &Url, last_seen: u64) -> Result<()> {
-        let index = self.get_whitelist_index_at_addr(addr).await?;
-        self.whitelist_update_last_seen(addr, last_seen, index).await;
-        Ok(())
-    }
-
-    pub async fn greylist_store_or_update(&self, addrs: &[(Url, u64)]) -> Result<()> {
-        debug!(target: "net::hosts::greylist_store_or_update()",
-        "hosts::greylist_store_or_update() [START]");
-
-        for (addr, last_seen) in addrs {
-            if !self.greylist_contains(addr).await {
-                debug!(target: "net::greylist_store_or_update()", "New greylist candidate found!");
-                // TODO: clean this up: greylist_store one item at a time
-                self.greylist_store(&[(addr.clone(), last_seen.clone())]).await;
-            } else {
-                debug!(target: "net::greylist_store_or_update()",
-                "Existing greylist entry found. Updating last_seen...");
-
-                let index = self.get_greylist_index_at_addr(addr).await?;
-                self.greylist_update_last_seen(addr, last_seen.clone(), index).await;
-            }
-        }
-        Ok(())
-    }
-
-    // Append host to the greylist. Called on learning of a new peer.
-    pub async fn greylist_store(&self, addrs: &[(Url, u64)]) {
-        debug!(target: "net::hosts::greylist_store()", "hosts::greylist_store() [START]");
-
-        debug!(target: "net::hosts::greylist_store()", "Filtering addresses...");
-        let filtered_addrs = self.filter_addresses(addrs).await;
-        let filtered_addrs_len = filtered_addrs.len();
-
-        debug!(target: "net::hosts::greylist_store()", "Filtered addresses.");
-        if !filtered_addrs.is_empty() {
-            debug!(target: "net::hosts::greylist_store()", "Starting greylist write...");
-            let mut greylist = self.greylist.write().await;
-            debug!(target: "net::hosts::greylist_store()", "Achieved write lock on greylist!");
-
-            // Remove oldest element if the greylist reaches max size.
-            if greylist.len() == 5000 {
-                let last_entry = greylist.pop().unwrap();
-                debug!(target: "net::hosts::greylist_store()", "Greylist reached max size. Removed {:?}", last_entry);
-            } else {
-                for (addr, last_seen) in filtered_addrs {
-                    debug!(target: "net::hosts::greylist_store()", "Inserting {}", addr);
-                    greylist.push((addr.clone(), last_seen.clone()))
-                }
-
-                // Sort the list by last_seen.
-                greylist.sort_unstable_by_key(|entry| entry.1);
-
-                debug!(target: "net::hosts::greylist_store()", "Sorted greylist: {:?}", greylist)
-            }
-        } else {
-            debug!(target: "net::hosts::greylist_store()", "Empty address message...")
-        }
-
-        self.store_subscriber.notify(filtered_addrs_len).await;
-        debug!(target: "net::hosts::greylist_store()", "hosts::greylist_store() [END]");
-    }
-
-    // Append host to the whitelist. Called after a successful interaction with an online peer.
-    pub async fn whitelist_store(&self, addr: &Url, last_seen: u64) {
-        debug!(target: "net::hosts::whitelist_store()", "hosts::whitelist_store() [START]");
-
-        let mut whitelist = self.whitelist.write().await;
-
-        debug!(target: "net::hosts::whitelist_store()", "Inserting {}. Last seen {:?}", addr, last_seen);
-
-        // Remove oldest element if the whitelist reaches max size.
-        if whitelist.len() == 1000 {
-            let last_entry = whitelist.pop().unwrap();
-            debug!(target: "net::hosts::whitelist_store()", "Whitelist reached max size. Removed {:?}", last_entry);
-        }
-        whitelist.push((addr.clone(), last_seen));
-
-        // Sort the list by last_seen.
-        whitelist.sort_unstable_by_key(|entry| entry.1);
-
-        debug!(target: "net::hosts::whitelist_store()", "Sorted whitelist: {:?}", whitelist);
-        debug!(target: "net::hosts::whitelist_store()", "hosts::whitelist_store() [END]");
-    }
-
-    // Update the last_seen field of a peer on the whitelist.
-    pub async fn whitelist_update_last_seen(&self, addr: &Url, last_seen: u64, index: usize) {
-        debug!(target: "net::hosts::update_last_seen()", "hosts::update_last_seen() [START]");
-
-        let mut whitelist = self.whitelist.write().await;
-
-        whitelist[index] = (addr.clone(), last_seen);
-    }
-
-    // Update the last_seen field of a peer on the greylist.
-    pub async fn greylist_update_last_seen(&self, addr: &Url, last_seen: u64, index: usize) {
-        debug!(target: "net::hosts::greylist_update_last_seen()", 
-               "hosts::greylist_update_last_seen() [START]");
-
-        let mut greylist = self.greylist.write().await;
-
-        greylist[index] = (addr.clone(), last_seen);
-    }
-
-    pub async fn whitelist_downgrade(&self, addr: &Url) {
-        // First lookup the entry using its addr.
-        let mut entry = vec![];
-
-        let whitelist = self.whitelist.read().await;
-        for (url, time) in whitelist.iter() {
-            if url == addr {
-                entry.push((url.clone(), time.clone()));
-            }
-        }
-
-        // TODO: This is for testing purposes.
-        assert!(entry.len() == 1);
-
-        // Remove this item from the whitelist.
-        let mut whitelist = self.whitelist.write().await;
-        // TODO: test!
-        let index = whitelist.iter().position(|x| *x == entry[0]);
-        // This should never fail since the entry exists.
-        whitelist.remove(index.unwrap());
-
-        // Add it to the greylist.
-        let addr = entry[0].0.clone();
-        let last_seen = entry[0].1.clone();
-        self.greylist_store(&[(addr, last_seen)]).await;
-    }
-
-    pub async fn subscribe_store(&self) -> Result<Subscription<usize>> {
-        let sub = self.store_subscriber.clone().subscribe().await;
-        Ok(sub)
-    }
-
-    // Verify whether a URL is local.
-    // NOTE: This function is stateless and not specific to
-    // `Hosts`. For this reason, it might make more sense
-    // to move this function to a more appropriate location
-    // in the codebase.
-    pub async fn is_local_host(&self, url: Url) -> bool {
-        // Reject Urls without host strings.
-        if url.host_str().is_none() {
-            return false
-        }
-
-        // We do this hack in order to parse IPs properly.
-        // https://github.com/whatwg/url/issues/749
-        let addr = Url::parse(&url.as_str().replace(url.scheme(), "http")).unwrap();
-        // Filter private IP ranges
-        match addr.host().unwrap() {
-            url::Host::Ipv4(ip) => {
-                if !ip.is_global() {
-                    return true
-                }
-            }
-            url::Host::Ipv6(ip) => {
-                if !ip.is_global() {
-                    return true
-                }
-            }
-            url::Host::Domain(d) => {
-                if LOCAL_HOST_STRS.contains(&d) {
-                    return true
-                }
-            }
-        }
-        false
-    }
-
-    /// Filter given addresses based on certain rulesets and validity.
-    async fn filter_addresses(&self, addrs: &[(Url, u64)]) -> Vec<(Url, u64)> {
-        debug!(target: "net::hosts::filter_addresses()", "Filtering addrs: {:?}", addrs);
-        let mut ret = vec![];
-        let localnet = self.settings.localnet;
-
-        'addr_loop: for (addr_, last_seen) in addrs {
-            // Validate that the format is `scheme://host_str:port`
-            if addr_.host_str().is_none() ||
-                addr_.port().is_none() ||
-                addr_.cannot_be_a_base() ||
-                addr_.path_segments().is_some()
-            {
-                continue
-            }
-
-            if self.is_rejected(addr_).await {
-                debug!(target: "net::hosts::filter_addresses()", "Peer {} is rejected", addr_);
-                continue
-            }
-
-            let host_str = addr_.host_str().unwrap();
-
-            if !localnet {
-                // Our own external addresses should never enter the hosts set.
-                for ext in &self.settings.external_addrs {
-                    if host_str == ext.host_str().unwrap() {
-                        continue 'addr_loop
-                    }
-                }
-            }
-
-            // We do this hack in order to parse IPs properly.
-            // https://github.com/whatwg/url/issues/749
-            let addr = Url::parse(&addr_.as_str().replace(addr_.scheme(), "http")).unwrap();
-
-            // Filter non-global ranges if we're not allowing localnet.
-            // Should never be allowed in production, so we don't really care
-            // about some of them (e.g. 0.0.0.0, or broadcast, etc.).
-            if !localnet && self.is_local_host(addr).await {
-                continue
-            }
-
-            match addr_.scheme() {
-                // Validate that the address is an actual onion.
-                #[cfg(feature = "p2p-tor")]
-                "tor" | "tor+tls" => {
-                    use std::str::FromStr;
-                    if tor_hscrypto::pk::HsId::from_str(host_str).is_err() {
-                        continue
-                    }
-                    debug!(target: "net::hosts::filter_addresses()", "[Tor] Valid: {}", host_str);
-                }
-
-                #[cfg(feature = "p2p-nym")]
-                "nym" | "nym+tls" => continue, // <-- Temp skip
-
-                #[cfg(feature = "p2p-tcp")]
-                "tcp" | "tcp+tls" => {
-                    debug!(target: "net::hosts::filter_addresses()", "[TCP] Valid: {}", host_str);
-                }
-
-                _ => continue,
-            }
-
-            ret.push((addr_.clone(), last_seen.clone()));
-        }
-
-        ret
-    }
-
-    /// Check if a given peer (URL) is in the set of rejected hosts
-    pub async fn is_rejected(&self, peer: &Url) -> bool {
-        // Skip lookup for UNIX sockets and localhost connections
-        // as they should never belong to the list of rejected URLs.
-        let Some(hostname) = peer.host_str() else { return false };
-
-        if self.is_local_host(peer.clone()).await {
-            return false
-        }
-
-        self.rejected.read().await.contains(hostname)
-    }
-
-    /// Mark a peer as rejected by adding it to the set of rejected URLs.
-    pub async fn mark_rejected(&self, peer: &Url) {
-        // We ignore UNIX sockets here so we will just work
-        // with stuff that has host_str().
-        if let Some(hostname) = peer.host_str() {
-            // Localhost connections should not be rejected
-            // This however allows any Tor and Nym connections.
-            if self.is_local_host(peer.clone()).await {
-                return
-            }
-
-            self.rejected.write().await.insert(hostname.to_string());
-        }
-    }
-
-    /// Unmark a rejected peer
-    pub async fn unmark_rejected(&self, peer: &Url) {
-        if let Some(hostname) = peer.host_str() {
-            self.rejected.write().await.remove(hostname);
-        }
-    }
-
-    /// Check if the greylist is empty.
-    pub async fn is_empty_greylist(&self) -> bool {
-        self.greylist.read().await.is_empty()
-    }
-
-    /// Check if the whitelist is empty.
-    pub async fn is_empty_whitelist(&self) -> bool {
-        self.whitelist.read().await.is_empty()
-    }
-
-    /// Check if host is in the greylist
-    pub async fn greylist_contains(&self, addr: &Url) -> bool {
-        let greylist = self.greylist.read().await;
-        if greylist.iter().any(|(u, _t)| u == addr) {
-            return true
-        }
-        return false
-    }
-
-    /// Check if host is in the whitelist
-    pub async fn whitelist_contains(&self, addr: &Url) -> bool {
-        let whitelist = self.whitelist.read().await;
-        if whitelist.iter().any(|(u, _t)| u == addr) {
-            return true
-        }
-        return false
-    }
-
-    /// Get the index for a given addr on the whitelist.
-    pub async fn get_whitelist_index_at_addr(&self, addr: &Url) -> Result<(usize)> {
-        let whitelist = self.whitelist.read().await;
-        for (i, (url, _time)) in whitelist.iter().enumerate() {
-            if url == addr {
-                return Ok(i)
-            }
-        }
-        return Err(Error::InvalidIndex)
-    }
-
-    /// Get the index for a given addr on the greylist.
-    pub async fn get_greylist_index_at_addr(&self, addr: &Url) -> Result<(usize)> {
-        let greylist = self.greylist.read().await;
-        for (i, (url, _time)) in greylist.iter().enumerate() {
-            if url == addr {
-                return Ok(i)
-            }
-        }
-        return Err(Error::InvalidIndex)
-    }
-    /// Return all known whitelisted hosts
-    pub async fn whitelist_fetch_all(&self) -> Vec<(Url, u64)> {
-        self.whitelist.read().await.iter().cloned().collect()
-    }
-
-    /// Get up to n random peers from the whitelist.
-    pub async fn fetch_n_random(&self, n: u32) -> Vec<(Url, u64)> {
-        let n = n as usize;
-        if n == 0 {
-            return vec![]
-        }
-        let addrs = self.whitelist.read().await;
-        let urls = addrs.iter().choose_multiple(&mut OsRng, n.min(addrs.len()));
-        urls.iter().map(|&url| url.clone()).collect()
-    }
-
-    /// Get up to n random whitelisted peers that match the given transport schemes from the hosts set.
-    pub async fn whitelist_fetch_n_random_with_schemes(
-        &self,
-        schemes: &[String],
-        n: u32,
-    ) -> Vec<(Url, u64)> {
-        let n = n as usize;
-        if n == 0 {
-            return vec![]
-        }
-
-        // Retrieve all peers corresponding to that transport schemes
-        let hosts = self.whitelist_fetch_with_schemes(schemes, None).await;
-        if hosts.is_empty() {
-            return hosts
-        }
-
-        // Grab random ones
-        let urls = hosts.iter().choose_multiple(&mut OsRng, n.min(hosts.len()));
-        urls.iter().map(|&url| url.clone()).collect()
-    }
-
-    /// Get up to n random whitelisted peers that don't match the given transport schemes from the hosts set.
-    pub async fn whitelist_fetch_n_random_excluding_schemes(
-        &self,
-        schemes: &[String],
-        n: u32,
-    ) -> Vec<(Url, u64)> {
-        let n = n as usize;
-        if n == 0 {
-            return vec![]
-        }
-
-        // Retrieve all peers not corresponding to that transport schemes
-        let hosts = self.whitelist_fetch_excluding_schemes(schemes, None).await;
-        if hosts.is_empty() {
-            return hosts
-        }
-
-        // Grab random ones
-        let urls = hosts.iter().choose_multiple(&mut OsRng, n.min(hosts.len()));
-        urls.iter().map(|&url| url.clone()).collect()
-    }
-
-    /// Get up to limit peers that match the given transport schemes from the whitelist.
-    /// If limit was not provided, return all matching peers.
-    pub async fn whitelist_fetch_with_schemes(
-        &self,
-        schemes: &[String],
-        limit: Option<usize>,
-    ) -> Vec<(Url, u64)> {
-        let whitelist = self.whitelist.read().await;
-        let mut limit = match limit {
-            Some(l) => l.min(whitelist.len()),
-            None => whitelist.len(),
-        };
-        let mut ret = vec![];
-
-        if limit == 0 {
-            return ret
-        }
-
-        for (addr, last_seen) in whitelist.iter() {
-            if schemes.contains(&addr.scheme().to_string()) {
-                ret.push((addr.clone(), *last_seen));
-                limit -= 1;
-                if limit == 0 {
-                    return ret
-                }
-            }
-        }
-
-        // If we didn't find any, pick some from the greylist
-        if ret.is_empty() {
-            for (addr, last_seen) in self.greylist.read().await.iter() {
-                if schemes.contains(&addr.scheme().to_string()) {
-                    ret.push((addr.clone(), *last_seen));
-                    limit -= 1;
-                    if limit == 0 {
-                        break
-                    }
-                }
-            }
-        }
-
-        ret
-    }
-
-    /// Get up to limit peers that don't match the given transport schemes from the whitelist.
-    /// If limit was not provided, return all matching peers.
-    pub async fn whitelist_fetch_excluding_schemes(
-        &self,
-        schemes: &[String],
-        limit: Option<usize>,
-    ) -> Vec<(Url, u64)> {
-        let addrs = self.whitelist.read().await;
-        let mut limit = match limit {
-            Some(l) => l.min(addrs.len()),
-            None => addrs.len(),
-        };
-        let mut ret = vec![];
-
-        if limit == 0 {
-            return ret
-        }
-
-        for (addr, last_seen) in addrs.iter() {
-            if !schemes.contains(&addr.scheme().to_string()) {
-                ret.push((addr.clone(), *last_seen));
-                limit -= 1;
-                if limit == 0 {
-                    return ret
-                }
-            }
-        }
-
-        // If we didn't find any, pick some from the greylist
-        if ret.is_empty() {
-            for (addr, last_seen) in self.greylist.read().await.iter() {
-                if !schemes.contains(&addr.scheme().to_string()) {
-                    ret.push((addr.clone(), *last_seen));
-                    limit -= 1;
-                    if limit == 0 {
-                        break
-                    }
-                }
-            }
-        }
-
-        ret
-    }
-}
-
-#[cfg(test)]
-mod tests {
-    use super::{super::settings::Settings, *};
-    use std::time::UNIX_EPOCH;
-
-    #[test]
-    fn test_is_local_host() {
-        smol::block_on(async {
-            let settings = Settings {
-                localnet: false,
-                external_addrs: vec![
-                    Url::parse("tcp://foo.bar:123").unwrap(),
-                    Url::parse("tcp://lol.cat:321").unwrap(),
-                ],
-                ..Default::default()
-            };
-            let hosts = Hosts::new(Arc::new(settings.clone()));
-
-            let local_hosts: Vec<Url> = vec![
-                Url::parse("tcp://localhost").unwrap(),
-                Url::parse("tcp://127.0.0.1").unwrap(),
-                Url::parse("tcp+tls://[::1]").unwrap(),
-                Url::parse("tcp://localhost.localdomain").unwrap(),
-                Url::parse("tcp://192.168.10.65").unwrap(),
-            ];
-            for host in local_hosts {
-                eprintln!("{}", host);
-                assert!(hosts.is_local_host(host).await);
-            }
-            let remote_hosts: Vec<Url> = vec![
-                Url::parse("https://dyne.org").unwrap(),
-                Url::parse("tcp://77.168.10.65:2222").unwrap(),
-                Url::parse("tcp://[2345:0425:2CA1:0000:0000:0567:5673:23b5]").unwrap(),
-                Url::parse("http://eweiibe6tdjsdprb4px6rqrzzcsi22m4koia44kc5pcjr7nec2rlxyad.onion")
-                    .unwrap(),
-            ];
-            for host in remote_hosts {
-                assert!(!(hosts.is_local_host(host).await))
-            }
-        });
-    }
-
-    #[test]
-    fn test_greylist_store() {
-        let last_seen = UNIX_EPOCH.elapsed().unwrap().as_secs();
-
-        smol::block_on(async {
-            let settings = Settings {
-                localnet: false,
-                external_addrs: vec![
-                    Url::parse("tcp://foo.bar:123").unwrap(),
-                    Url::parse("tcp://lol.cat:321").unwrap(),
-                ],
-                ..Default::default()
-            };
-
-            let hosts = Hosts::new(Arc::new(settings.clone()));
-            let mut external_addrs = vec![];
-            for addr in settings.external_addrs {
-                external_addrs.push((addr, last_seen))
-            }
-
-            hosts.greylist_store(&external_addrs).await;
-            assert!(hosts.is_empty_greylist().await);
-
-            let local_hosts = vec![
-                (Url::parse("tcp://localhost:3921").unwrap(), last_seen),
-                (Url::parse("tor://[::1]:21481").unwrap(), last_seen),
-                (Url::parse("tcp://192.168.10.65:311").unwrap(), last_seen),
-                (Url::parse("tcp+tls://0.0.0.0:2312").unwrap(), last_seen),
-                (Url::parse("tcp://255.255.255.255:2131").unwrap(), last_seen),
-            ];
-            hosts.greylist_store(&local_hosts).await;
-            assert!(hosts.is_empty_greylist().await);
-
-            let remote_hosts = vec![
-                (Url::parse("tcp://dark.fi:80").unwrap(), last_seen),
-                (Url::parse("tcp://http.cat:401").unwrap(), last_seen),
-                (Url::parse("tcp://foo.bar:111").unwrap(), last_seen),
-            ];
-            hosts.greylist_store(&remote_hosts).await;
-            assert!(hosts.greylist_contains(&remote_hosts[0].0).await);
-            assert!(hosts.greylist_contains(&remote_hosts[1].0).await);
-            assert!(!hosts.greylist_contains(&remote_hosts[2].0).await);
-        });
-    }
-
-    #[test]
-    fn test_whitelist_store() {
-        smol::block_on(async {
-            let settings = Settings {
-                localnet: false,
-                external_addrs: vec![
-                    Url::parse("tcp://foo.bar:123").unwrap(),
-                    Url::parse("tcp://lol.cat:321").unwrap(),
-                ],
-                ..Default::default()
-            };
-
-            let hosts = Hosts::new(Arc::new(settings.clone()));
-            assert!(hosts.is_empty_whitelist().await);
-
-            let url = Url::parse("tcp://dark.renaissance:333").unwrap();
-            let last_seen = UNIX_EPOCH.elapsed().unwrap().as_secs();
-
-            hosts.whitelist_store(&url, last_seen).await;
-
-            assert!(!hosts.is_empty_whitelist().await);
-            assert!(hosts.whitelist_contains(&url).await);
-        });
-    }
-}