1use crate::blob_cache::BlobCache;
2use crate::nostr_relay::NostrRelay;
3use crate::socialgraph;
4use crate::storage::HashtreeStore;
5use crate::webrtc::{PeerRootEvent, WebRTCState};
6use axum::{
7 body::Body,
8 extract::ws::Message,
9 extract::State,
10 http::{header, Request, Response, StatusCode},
11 middleware::Next,
12};
13use futures::future::{BoxFuture, Shared};
14use hashtree_core::{Cid, LinkType, TreeEntry};
15use lru::LruCache;
16use std::collections::{HashMap, HashSet};
17use std::hash::Hash;
18use std::num::NonZeroUsize;
19use std::sync::{
20 atomic::{AtomicU32, AtomicU64, Ordering},
21 Arc, Mutex as StdMutex,
22};
23use std::time::{Duration, Instant};
24use tokio::{
25 sync::{mpsc, watch, Mutex, Semaphore},
26 task::JoinHandle,
27};
28
29const LOOKUP_CACHE_CAPACITY: usize = 4096;
30const LOOKUP_CACHE_HIT_TTL: Duration = Duration::from_secs(300);
31const LOOKUP_CACHE_MISS_TTL: Duration = Duration::from_secs(1);
32
33#[derive(Debug, Clone)]
34pub enum LookupResult<T> {
35 Hit(T),
36 Miss,
37}
38
39impl<T> LookupResult<T> {
40 pub fn from_option(value: Option<T>) -> Self {
41 match value {
42 Some(value) => Self::Hit(value),
43 None => Self::Miss,
44 }
45 }
46
47 pub fn into_option(self) -> Option<T> {
48 match self {
49 Self::Hit(value) => Some(value),
50 Self::Miss => None,
51 }
52 }
53
54 pub fn ttl(&self) -> Duration {
55 match self {
56 Self::Hit(_) => LOOKUP_CACHE_HIT_TTL,
57 Self::Miss => LOOKUP_CACHE_MISS_TTL,
58 }
59 }
60}
61
62pub struct TimedLruCache<K, V> {
63 cache: LruCache<K, TimedValue<V>>,
64}
65
66#[derive(Clone)]
67struct TimedValue<V> {
68 value: V,
69 expires_at: Instant,
70}
71
72impl<K: Eq + Hash, V: Clone> TimedLruCache<K, V> {
73 pub fn new(capacity: usize) -> Self {
74 Self {
75 cache: LruCache::new(NonZeroUsize::new(capacity.max(1)).unwrap()),
76 }
77 }
78
79 pub fn get_cloned(&mut self, key: &K) -> Option<V> {
80 let now = Instant::now();
81 if let Some(entry) = self.cache.get(key) {
82 if entry.expires_at > now {
83 return Some(entry.value.clone());
84 }
85 }
86 self.cache.pop(key);
87 None
88 }
89
90 pub fn put(&mut self, key: K, value: V, ttl: Duration) {
91 self.cache.put(
92 key,
93 TimedValue {
94 value,
95 expires_at: Instant::now() + ttl,
96 },
97 );
98 }
99}
100
101pub fn new_lookup_cache<K: Eq + Hash, V: Clone>() -> TimedLruCache<K, V> {
102 TimedLruCache::new(LOOKUP_CACHE_CAPACITY)
103}
104
105#[derive(Debug, Clone)]
106pub struct CachedResolvedPathEntry {
107 pub cid: Cid,
108 pub link_type: LinkType,
109}
110
111#[derive(Debug, Clone)]
112pub struct CachedTreeRootEntry {
113 pub cid: Cid,
114 pub source: &'static str,
115 pub root_event: Option<PeerRootEvent>,
116}
117
118pub type SharedBlobFetch = Shared<BoxFuture<'static, bool>>;
119pub type SharedBlobRead = Shared<BoxFuture<'static, Result<Option<Vec<u8>>, String>>>;
120
121#[derive(Debug, Clone, Copy, PartialEq, Eq)]
122pub enum WsProtocol {
123 HashtreeJson,
124 HashtreeMsgpack,
125 Unknown,
126}
127
128pub struct PendingRequest {
129 pub origin_id: u64,
130 pub hash: String,
131 pub found: bool,
132 pub origin_protocol: WsProtocol,
133}
134
135pub struct UpstreamNostrSubscription {
136 pub close_tx: watch::Sender<bool>,
137 pub tasks: Vec<JoinHandle<()>>,
138}
139
140pub struct WsRelayState {
141 pub clients: Mutex<HashMap<u64, mpsc::UnboundedSender<Message>>>,
142 pub pending: Mutex<HashMap<(u64, u32), PendingRequest>>,
143 pub client_protocols: Mutex<HashMap<u64, WsProtocol>>,
144 pub upstream_nostr_subscriptions: Mutex<HashMap<(u64, String), UpstreamNostrSubscription>>,
145 pub upstream_seen_events: Mutex<HashMap<(u64, String), HashSet<String>>>,
146 pub upstream_pending_eose: Mutex<HashMap<(u64, String), usize>>,
147 pub next_client_id: AtomicU64,
148 pub next_request_id: AtomicU32,
149 pub upstream_relay_bytes_sent: AtomicU64,
150 pub upstream_relay_bytes_received: AtomicU64,
151}
152
153impl WsRelayState {
154 pub fn new() -> Self {
155 Self {
156 clients: Mutex::new(HashMap::new()),
157 pending: Mutex::new(HashMap::new()),
158 client_protocols: Mutex::new(HashMap::new()),
159 upstream_nostr_subscriptions: Mutex::new(HashMap::new()),
160 upstream_seen_events: Mutex::new(HashMap::new()),
161 upstream_pending_eose: Mutex::new(HashMap::new()),
162 next_client_id: AtomicU64::new(1),
163 next_request_id: AtomicU32::new(1),
164 upstream_relay_bytes_sent: AtomicU64::new(0),
165 upstream_relay_bytes_received: AtomicU64::new(0),
166 }
167 }
168
169 pub fn next_id(&self) -> u64 {
170 self.next_client_id.fetch_add(1, Ordering::SeqCst)
171 }
172
173 pub fn next_request_id(&self) -> u32 {
174 self.next_request_id.fetch_add(1, Ordering::SeqCst)
175 }
176
177 pub fn note_upstream_relay_send(&self, bytes: usize) {
178 self.upstream_relay_bytes_sent
179 .fetch_add(bytes as u64, Ordering::Relaxed);
180 }
181
182 pub fn note_upstream_relay_receive(&self, bytes: usize) {
183 self.upstream_relay_bytes_received
184 .fetch_add(bytes as u64, Ordering::Relaxed);
185 }
186
187 pub fn upstream_relay_bandwidth(&self) -> (u64, u64) {
188 (
189 self.upstream_relay_bytes_sent.load(Ordering::Relaxed),
190 self.upstream_relay_bytes_received.load(Ordering::Relaxed),
191 )
192 }
193}
194
195#[derive(Clone)]
196pub struct AppState {
197 pub store: Arc<HashtreeStore>,
198 pub auth: Option<AuthCredentials>,
199 pub daemon_started_at: u64,
201 pub peer_mode: crate::config::ServerMode,
202 pub hash_get_enabled: bool,
203 pub http_webrtc_fetch: bool,
206 pub webrtc_peers: Option<Arc<WebRTCState>>,
208 pub ws_relay: Arc<WsRelayState>,
210 pub max_upload_bytes: usize,
212 pub public_writes: bool,
215 pub require_random_untrusted_ingest: bool,
217 pub optimistic_blossom_uploads: bool,
220 pub optimistic_upload_queue_bytes: usize,
223 pub optimistic_upload_queue: Arc<Semaphore>,
224 pub allowed_pubkeys: HashSet<String>,
226 pub upstream_blossom: Vec<String>,
228 pub social_graph: Option<Arc<socialgraph::SocialGraphAccessControl>>,
230 pub social_graph_store: Option<Arc<dyn socialgraph::SocialGraphBackend>>,
232 pub social_graph_root: Option<[u8; 32]>,
234 pub socialgraph_snapshot_public: bool,
236 pub nostr_relay: Option<Arc<NostrRelay>>,
238 pub nostr_relay_urls: Vec<String>,
240 pub tree_root_cache: Arc<StdMutex<HashMap<String, CachedTreeRootEntry>>>,
242 pub inflight_blob_fetches: Arc<Mutex<HashMap<String, SharedBlobFetch>>>,
244 pub inflight_blob_reads: Arc<Mutex<HashMap<String, SharedBlobRead>>>,
247 pub(super) blob_cache: Arc<BlobCache>,
249 pub directory_listing_cache: Arc<StdMutex<TimedLruCache<String, LookupResult<Vec<TreeEntry>>>>>,
251 pub resolved_path_cache:
253 Arc<StdMutex<TimedLruCache<String, LookupResult<CachedResolvedPathEntry>>>>,
254 pub thumbnail_path_cache: Arc<StdMutex<TimedLruCache<String, LookupResult<String>>>>,
256 pub cid_size_cache: Arc<StdMutex<TimedLruCache<String, LookupResult<u64>>>>,
258}
259
260#[derive(Clone)]
261pub struct AuthCredentials {
262 pub username: String,
263 pub password: String,
264}
265
266pub async fn auth_middleware(
268 State(state): State<AppState>,
269 request: Request<Body>,
270 next: Next,
271) -> Result<Response<Body>, StatusCode> {
272 let Some(auth) = &state.auth else {
274 return Ok(next.run(request).await);
275 };
276
277 let auth_header = request
279 .headers()
280 .get(header::AUTHORIZATION)
281 .and_then(|v| v.to_str().ok());
282
283 let authorized = if let Some(header_value) = auth_header {
284 if let Some(credentials) = header_value.strip_prefix("Basic ") {
285 use base64::Engine;
286 let engine = base64::engine::general_purpose::STANDARD;
287 if let Ok(decoded) = engine.decode(credentials) {
288 if let Ok(decoded_str) = String::from_utf8(decoded) {
289 let expected = format!("{}:{}", auth.username, auth.password);
290 decoded_str == expected
291 } else {
292 false
293 }
294 } else {
295 false
296 }
297 } else {
298 false
299 }
300 } else {
301 false
302 };
303
304 if authorized {
305 Ok(next.run(request).await)
306 } else {
307 Ok(Response::builder()
308 .status(StatusCode::UNAUTHORIZED)
309 .header(header::WWW_AUTHENTICATE, "Basic realm=\"hashtree\"")
310 .body(Body::from("Unauthorized"))
311 .unwrap())
312 }
313}