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hashtree_cli/socialgraph/
mod.rs

1pub mod access;
2pub mod crawler;
3pub mod local_lists;
4pub mod snapshot;
5
6pub use access::SocialGraphAccessControl;
7pub use crawler::SocialGraphCrawler;
8pub use local_lists::{
9    read_local_list_file_state, sync_local_list_files_force, sync_local_list_files_if_changed,
10    LocalListFileState, LocalListSyncOutcome,
11};
12
13mod index_buckets;
14
15use index_buckets::{
16    dedupe_events, latest_metadata_events_by_pubkey, EventIndexBucket, ProfileIndexBucket,
17};
18
19use std::collections::{BTreeMap, BTreeSet, HashMap, HashSet};
20use std::path::{Path, PathBuf};
21use std::sync::{Arc, Mutex as StdMutex};
22
23use anyhow::{Context, Result};
24use bytes::Bytes;
25use futures::executor::block_on;
26use hashtree_core::{nhash_encode_full, Cid, HashTree, HashTreeConfig, NHashData};
27use hashtree_index::BTree;
28use hashtree_nostr::{
29    is_parameterized_replaceable_kind, is_replaceable_kind, ListEventsOptions, NostrEventStore,
30    NostrEventStoreError, ProfileGuard as NostrProfileGuard, StoredNostrEvent,
31};
32#[cfg(test)]
33use hashtree_nostr::{
34    reset_profile as reset_nostr_profile, set_profile_enabled as set_nostr_profile_enabled,
35    take_profile as take_nostr_profile,
36};
37use nostr::{Event, Filter, JsonUtil, Kind, SingleLetterTag};
38use nostr_social_graph::{
39    BinaryBudget, GraphStats, NostrEvent as GraphEvent, SocialGraph,
40    SocialGraphBackend as NostrSocialGraphBackend,
41};
42use nostr_social_graph_heed::HeedSocialGraph;
43
44use crate::storage::{LocalStore, StorageRouter};
45
46#[cfg(test)]
47use std::sync::{Mutex, MutexGuard, OnceLock};
48#[cfg(test)]
49use std::time::Instant;
50
51pub type UserSet = BTreeSet<[u8; 32]>;
52
53const DEFAULT_ROOT_HEX: &str = "0000000000000000000000000000000000000000000000000000000000000000";
54const EVENTS_ROOT_FILE: &str = "events-root.msgpack";
55const AMBIENT_EVENTS_ROOT_FILE: &str = "events-root-ambient.msgpack";
56const AMBIENT_EVENTS_BLOB_DIR: &str = "ambient-blobs";
57const PROFILE_SEARCH_ROOT_FILE: &str = "profile-search-root.msgpack";
58const PROFILES_BY_PUBKEY_ROOT_FILE: &str = "profiles-by-pubkey-root.msgpack";
59const UNKNOWN_FOLLOW_DISTANCE: u32 = 1000;
60const DEFAULT_SOCIALGRAPH_MAP_SIZE_BYTES: u64 = 64 * 1024 * 1024;
61const SOCIALGRAPH_MAX_DBS: u32 = 16;
62const PROFILE_SEARCH_INDEX_ORDER: usize = 64;
63const PROFILE_SEARCH_PREFIX: &str = "p:";
64const PROFILE_NAME_MAX_LENGTH: usize = 100;
65
66#[derive(Debug, Clone, Copy, PartialEq, Eq)]
67pub enum EventStorageClass {
68    Public,
69    Ambient,
70}
71
72#[cfg_attr(not(test), allow(dead_code))]
73#[derive(Debug, Clone, Copy, PartialEq, Eq)]
74pub(crate) enum EventQueryScope {
75    PublicOnly,
76    AmbientOnly,
77    All,
78}
79
80#[derive(Debug, Clone, serde::Serialize, serde::Deserialize)]
81struct StoredCid {
82    hash: [u8; 32],
83    key: Option<[u8; 32]>,
84}
85
86#[derive(Debug, Clone, PartialEq, Eq, serde::Serialize, serde::Deserialize)]
87pub struct StoredProfileSearchEntry {
88    pub pubkey: String,
89    pub name: String,
90    #[serde(default)]
91    pub aliases: Vec<String>,
92    #[serde(default)]
93    pub nip05: Option<String>,
94    #[serde(default, skip_serializing_if = "Option::is_none")]
95    pub follow_distance: Option<u32>,
96    pub created_at: u64,
97    pub event_nhash: String,
98}
99
100#[derive(Debug, Clone, Default, serde::Serialize)]
101pub struct SocialGraphStats {
102    pub total_users: usize,
103    pub root: Option<String>,
104    pub total_follows: usize,
105    pub max_depth: u32,
106    pub size_by_distance: BTreeMap<u32, usize>,
107    pub enabled: bool,
108}
109
110#[derive(Debug, Clone)]
111struct DistanceCache {
112    stats: SocialGraphStats,
113    users_by_distance: BTreeMap<u32, Vec<[u8; 32]>>,
114}
115
116#[derive(Debug, thiserror::Error)]
117#[error("{0}")]
118pub struct UpstreamGraphBackendError(String);
119
120pub struct SocialGraphStore {
121    graph: StdMutex<HeedSocialGraph>,
122    distance_cache: StdMutex<Option<DistanceCache>>,
123    public_events: EventIndexBucket,
124    ambient_events: EventIndexBucket,
125    profile_index: ProfileIndexBucket,
126    profile_index_overmute_threshold: StdMutex<f64>,
127}
128
129pub trait SocialGraphBackend: Send + Sync {
130    fn stats(&self) -> Result<SocialGraphStats>;
131    fn users_by_follow_distance(&self, distance: u32) -> Result<Vec<[u8; 32]>>;
132    fn follow_distance(&self, pk_bytes: &[u8; 32]) -> Result<Option<u32>>;
133    fn follow_list_created_at(&self, owner: &[u8; 32]) -> Result<Option<u64>>;
134    fn followed_targets(&self, owner: &[u8; 32]) -> Result<UserSet>;
135    fn is_overmuted_user(&self, user_pk: &[u8; 32], threshold: f64) -> Result<bool>;
136    fn profile_search_root(&self) -> Result<Option<Cid>> {
137        Ok(None)
138    }
139    fn snapshot_chunks(&self, root: &[u8; 32], options: &BinaryBudget) -> Result<Vec<Bytes>>;
140    fn ingest_event(&self, event: &Event) -> Result<()>;
141    fn ingest_event_with_storage_class(
142        &self,
143        event: &Event,
144        storage_class: EventStorageClass,
145    ) -> Result<()> {
146        let _ = storage_class;
147        self.ingest_event(event)
148    }
149    fn ingest_events(&self, events: &[Event]) -> Result<()> {
150        for event in events {
151            self.ingest_event(event)?;
152        }
153        Ok(())
154    }
155    fn ingest_events_with_storage_class(
156        &self,
157        events: &[Event],
158        storage_class: EventStorageClass,
159    ) -> Result<()> {
160        for event in events {
161            self.ingest_event_with_storage_class(event, storage_class)?;
162        }
163        Ok(())
164    }
165    fn ingest_graph_events(&self, events: &[Event]) -> Result<()> {
166        self.ingest_events(events)
167    }
168    fn query_events(&self, filter: &Filter, limit: usize) -> Result<Vec<Event>>;
169}
170
171#[cfg(test)]
172pub type TestLockGuard = MutexGuard<'static, ()>;
173
174#[cfg(test)]
175static NDB_TEST_LOCK: OnceLock<Mutex<()>> = OnceLock::new();
176
177#[cfg(test)]
178pub fn test_lock() -> TestLockGuard {
179    NDB_TEST_LOCK
180        .get_or_init(|| Mutex::new(()))
181        .lock()
182        .unwrap_or_else(|err| err.into_inner())
183}
184
185pub fn open_social_graph_store(data_dir: &Path) -> Result<Arc<SocialGraphStore>> {
186    open_social_graph_store_with_mapsize(data_dir, None)
187}
188
189pub fn open_social_graph_store_with_mapsize(
190    data_dir: &Path,
191    mapsize_bytes: Option<u64>,
192) -> Result<Arc<SocialGraphStore>> {
193    let db_dir = data_dir.join("socialgraph");
194    open_social_graph_store_at_path(&db_dir, mapsize_bytes)
195}
196
197pub fn open_social_graph_store_with_storage(
198    data_dir: &Path,
199    store: Arc<StorageRouter>,
200    mapsize_bytes: Option<u64>,
201) -> Result<Arc<SocialGraphStore>> {
202    let db_dir = data_dir.join("socialgraph");
203    open_social_graph_store_at_path_with_storage(&db_dir, store, mapsize_bytes)
204}
205
206pub fn open_social_graph_store_at_path(
207    db_dir: &Path,
208    mapsize_bytes: Option<u64>,
209) -> Result<Arc<SocialGraphStore>> {
210    let config = hashtree_config::Config::load_or_default();
211    let backend = &config.storage.backend;
212    let local_store = Arc::new(
213        LocalStore::new_with_lmdb_map_size(db_dir.join("blobs"), backend, mapsize_bytes)
214            .map_err(|err| anyhow::anyhow!("Failed to create social graph blob store: {err}"))?,
215    );
216    let store = Arc::new(StorageRouter::new(local_store));
217    open_social_graph_store_at_path_with_storage(db_dir, store, mapsize_bytes)
218}
219
220pub fn open_social_graph_store_at_path_with_storage(
221    db_dir: &Path,
222    store: Arc<StorageRouter>,
223    mapsize_bytes: Option<u64>,
224) -> Result<Arc<SocialGraphStore>> {
225    let ambient_backend = store.local_store().backend();
226    let ambient_local = Arc::new(
227        LocalStore::new_with_lmdb_map_size(
228            db_dir.join(AMBIENT_EVENTS_BLOB_DIR),
229            &ambient_backend,
230            mapsize_bytes,
231        )
232        .map_err(|err| {
233            anyhow::anyhow!("Failed to create social graph ambient blob store: {err}")
234        })?,
235    );
236    let ambient_store = Arc::new(StorageRouter::new(ambient_local));
237    open_social_graph_store_at_path_with_storage_split(db_dir, store, ambient_store, mapsize_bytes)
238}
239
240pub fn open_social_graph_store_at_path_with_storage_split(
241    db_dir: &Path,
242    public_store: Arc<StorageRouter>,
243    ambient_store: Arc<StorageRouter>,
244    mapsize_bytes: Option<u64>,
245) -> Result<Arc<SocialGraphStore>> {
246    std::fs::create_dir_all(db_dir)?;
247    if let Some(size) = mapsize_bytes {
248        ensure_social_graph_mapsize(db_dir, size)?;
249    }
250    let graph = HeedSocialGraph::open(db_dir, DEFAULT_ROOT_HEX)
251        .context("open nostr-social-graph heed backend")?;
252
253    Ok(Arc::new(SocialGraphStore {
254        graph: StdMutex::new(graph),
255        distance_cache: StdMutex::new(None),
256        public_events: EventIndexBucket {
257            event_store: NostrEventStore::new(Arc::clone(&public_store)),
258            root_path: db_dir.join(EVENTS_ROOT_FILE),
259        },
260        ambient_events: EventIndexBucket {
261            event_store: NostrEventStore::new(ambient_store),
262            root_path: db_dir.join(AMBIENT_EVENTS_ROOT_FILE),
263        },
264        profile_index: ProfileIndexBucket {
265            tree: HashTree::new(HashTreeConfig::new(Arc::clone(&public_store))),
266            index: BTree::new(
267                public_store,
268                hashtree_index::BTreeOptions {
269                    order: Some(PROFILE_SEARCH_INDEX_ORDER),
270                },
271            ),
272            by_pubkey_root_path: db_dir.join(PROFILES_BY_PUBKEY_ROOT_FILE),
273            search_root_path: db_dir.join(PROFILE_SEARCH_ROOT_FILE),
274        },
275        profile_index_overmute_threshold: StdMutex::new(1.0),
276    }))
277}
278
279pub fn set_social_graph_root(store: &SocialGraphStore, pk_bytes: &[u8; 32]) {
280    if let Err(err) = store.set_root(pk_bytes) {
281        tracing::warn!("Failed to set social graph root: {err}");
282    }
283}
284
285pub fn get_follow_distance(
286    backend: &(impl SocialGraphBackend + ?Sized),
287    pk_bytes: &[u8; 32],
288) -> Option<u32> {
289    backend.follow_distance(pk_bytes).ok().flatten()
290}
291
292pub fn get_follows(
293    backend: &(impl SocialGraphBackend + ?Sized),
294    pk_bytes: &[u8; 32],
295) -> Vec<[u8; 32]> {
296    match backend.followed_targets(pk_bytes) {
297        Ok(set) => set.into_iter().collect(),
298        Err(_) => Vec::new(),
299    }
300}
301
302pub fn is_overmuted(
303    backend: &(impl SocialGraphBackend + ?Sized),
304    _root_pk: &[u8; 32],
305    user_pk: &[u8; 32],
306    threshold: f64,
307) -> bool {
308    backend
309        .is_overmuted_user(user_pk, threshold)
310        .unwrap_or(false)
311}
312
313pub fn ingest_event(backend: &(impl SocialGraphBackend + ?Sized), _sub_id: &str, event_json: &str) {
314    let event = match Event::from_json(event_json) {
315        Ok(event) => event,
316        Err(_) => return,
317    };
318
319    if let Err(err) = backend.ingest_event(&event) {
320        tracing::warn!("Failed to ingest social graph event: {err}");
321    }
322}
323
324pub fn ingest_parsed_event(
325    backend: &(impl SocialGraphBackend + ?Sized),
326    event: &Event,
327) -> Result<()> {
328    backend.ingest_event(event)
329}
330
331pub fn ingest_parsed_event_with_storage_class(
332    backend: &(impl SocialGraphBackend + ?Sized),
333    event: &Event,
334    storage_class: EventStorageClass,
335) -> Result<()> {
336    backend.ingest_event_with_storage_class(event, storage_class)
337}
338
339pub fn ingest_parsed_events(
340    backend: &(impl SocialGraphBackend + ?Sized),
341    events: &[Event],
342) -> Result<()> {
343    backend.ingest_events(events)
344}
345
346pub fn ingest_parsed_events_with_storage_class(
347    backend: &(impl SocialGraphBackend + ?Sized),
348    events: &[Event],
349    storage_class: EventStorageClass,
350) -> Result<()> {
351    backend.ingest_events_with_storage_class(events, storage_class)
352}
353
354pub fn ingest_graph_parsed_events(
355    backend: &(impl SocialGraphBackend + ?Sized),
356    events: &[Event],
357) -> Result<()> {
358    backend.ingest_graph_events(events)
359}
360
361pub fn query_events(
362    backend: &(impl SocialGraphBackend + ?Sized),
363    filter: &Filter,
364    limit: usize,
365) -> Vec<Event> {
366    backend.query_events(filter, limit).unwrap_or_default()
367}
368
369impl SocialGraphStore {
370    pub fn set_profile_index_overmute_threshold(&self, threshold: f64) {
371        *self
372            .profile_index_overmute_threshold
373            .lock()
374            .expect("profile index overmute threshold") = threshold;
375    }
376
377    fn profile_index_overmute_threshold(&self) -> f64 {
378        *self
379            .profile_index_overmute_threshold
380            .lock()
381            .expect("profile index overmute threshold")
382    }
383
384    fn invalidate_distance_cache(&self) {
385        *self.distance_cache.lock().unwrap() = None;
386    }
387
388    fn build_distance_cache(state: nostr_social_graph::SocialGraphState) -> Result<DistanceCache> {
389        let unique_ids = state
390            .unique_ids
391            .into_iter()
392            .map(|(pubkey, id)| decode_pubkey(&pubkey).map(|decoded| (id, decoded)))
393            .collect::<Result<HashMap<_, _>>>()?;
394
395        let mut users_by_distance = BTreeMap::new();
396        let mut size_by_distance = BTreeMap::new();
397        for (distance, users) in state.users_by_follow_distance {
398            let decoded = users
399                .into_iter()
400                .filter_map(|id| unique_ids.get(&id).copied())
401                .collect::<Vec<_>>();
402            size_by_distance.insert(distance, decoded.len());
403            users_by_distance.insert(distance, decoded);
404        }
405
406        let total_follows = state
407            .followed_by_user
408            .iter()
409            .map(|(_, targets)| targets.len())
410            .sum::<usize>();
411        let total_users = size_by_distance.values().copied().sum();
412        let max_depth = size_by_distance.keys().copied().max().unwrap_or_default();
413
414        Ok(DistanceCache {
415            stats: SocialGraphStats {
416                total_users,
417                root: Some(state.root),
418                total_follows,
419                max_depth,
420                size_by_distance,
421                enabled: true,
422            },
423            users_by_distance,
424        })
425    }
426
427    fn load_distance_cache(&self) -> Result<DistanceCache> {
428        if let Some(cache) = self.distance_cache.lock().unwrap().clone() {
429            return Ok(cache);
430        }
431
432        let state = {
433            let graph = self.graph.lock().unwrap();
434            graph.export_state().context("export social graph state")?
435        };
436        let cache = Self::build_distance_cache(state)?;
437        *self.distance_cache.lock().unwrap() = Some(cache.clone());
438        Ok(cache)
439    }
440
441    fn set_root(&self, root: &[u8; 32]) -> Result<()> {
442        let root_hex = hex::encode(root);
443        {
444            let mut graph = self.graph.lock().unwrap();
445            if should_replace_placeholder_root(&graph)? {
446                let fresh = SocialGraph::new(&root_hex);
447                graph
448                    .replace_state(&fresh.export_state())
449                    .context("replace placeholder social graph root")?;
450            } else {
451                graph
452                    .set_root(&root_hex)
453                    .context("set nostr-social-graph root")?;
454            }
455        }
456        self.invalidate_distance_cache();
457        Ok(())
458    }
459
460    fn stats(&self) -> Result<SocialGraphStats> {
461        Ok(self.load_distance_cache()?.stats)
462    }
463
464    fn follow_distance(&self, pk_bytes: &[u8; 32]) -> Result<Option<u32>> {
465        let graph = self.graph.lock().unwrap();
466        let distance = graph
467            .get_follow_distance(&hex::encode(pk_bytes))
468            .context("read social graph follow distance")?;
469        Ok((distance != UNKNOWN_FOLLOW_DISTANCE).then_some(distance))
470    }
471
472    fn users_by_follow_distance(&self, distance: u32) -> Result<Vec<[u8; 32]>> {
473        Ok(self
474            .load_distance_cache()?
475            .users_by_distance
476            .get(&distance)
477            .cloned()
478            .unwrap_or_default())
479    }
480
481    fn follow_list_created_at(&self, owner: &[u8; 32]) -> Result<Option<u64>> {
482        let graph = self.graph.lock().unwrap();
483        graph
484            .get_follow_list_created_at(&hex::encode(owner))
485            .context("read social graph follow list timestamp")
486    }
487
488    fn followed_targets(&self, owner: &[u8; 32]) -> Result<UserSet> {
489        let graph = self.graph.lock().unwrap();
490        decode_pubkey_set(
491            graph
492                .get_followed_by_user(&hex::encode(owner))
493                .context("read followed targets")?,
494        )
495    }
496
497    fn is_overmuted_user(&self, user_pk: &[u8; 32], threshold: f64) -> Result<bool> {
498        if threshold <= 0.0 {
499            return Ok(false);
500        }
501        let graph = self.graph.lock().unwrap();
502        graph
503            .is_overmuted(&hex::encode(user_pk), threshold)
504            .context("check social graph overmute")
505    }
506
507    #[cfg_attr(not(test), allow(dead_code))]
508    pub fn profile_search_root(&self) -> Result<Option<Cid>> {
509        self.profile_index.search_root()
510    }
511
512    #[cfg_attr(not(test), allow(dead_code))]
513    pub fn profiles_by_pubkey_root(&self) -> Result<Option<Cid>> {
514        self.profile_index.by_pubkey_root()
515    }
516
517    pub fn public_events_root(&self) -> Result<Option<Cid>> {
518        self.public_events.events_root()
519    }
520
521    #[cfg_attr(test, allow(dead_code))]
522    pub(crate) fn public_events_root_for_write(&self) -> Result<Option<Cid>> {
523        self.public_events.events_root_for_write()
524    }
525
526    pub(crate) fn write_public_events_root(&self, root: Option<&Cid>) -> Result<()> {
527        self.public_events.write_events_root(root)
528    }
529
530    #[cfg_attr(not(test), allow(dead_code))]
531    pub fn latest_profile_event(&self, pubkey_hex: &str) -> Result<Option<Event>> {
532        self.profile_index.profile_event_for_pubkey(pubkey_hex)
533    }
534
535    #[cfg_attr(not(test), allow(dead_code))]
536    pub fn profile_search_entries_for_prefix(
537        &self,
538        prefix: &str,
539    ) -> Result<Vec<(String, StoredProfileSearchEntry)>> {
540        self.profile_index.search_entries_for_prefix(prefix)
541    }
542
543    pub fn sync_profile_index_for_events(&self, events: &[Event]) -> Result<()> {
544        self.update_profile_index_for_events(events)
545    }
546
547    pub(crate) fn rebuild_profile_index_for_events(&self, events: &[Event]) -> Result<()> {
548        let latest_by_pubkey = self.filtered_latest_metadata_events_by_pubkey(events)?;
549        let (by_pubkey_root, search_root) = self
550            .profile_index
551            .rebuild_profile_events_with_distances(latest_by_pubkey.into_values(), |event| {
552                self.follow_distance(&event.pubkey.to_bytes())
553            })?;
554        self.profile_index
555            .write_by_pubkey_root(by_pubkey_root.as_ref())?;
556        self.profile_index.write_search_root(search_root.as_ref())?;
557        Ok(())
558    }
559
560    pub(crate) async fn rebuild_profile_index_for_events_async(
561        &self,
562        events: &[Event],
563    ) -> Result<()> {
564        let latest_by_pubkey = self.filtered_latest_metadata_events_by_pubkey(events)?;
565        let (by_pubkey_root, search_root) = self
566            .profile_index
567            .rebuild_profile_events_async_with_distances(latest_by_pubkey.into_values(), |event| {
568                self.follow_distance(&event.pubkey.to_bytes())
569            })
570            .await?;
571        self.profile_index
572            .write_by_pubkey_root(by_pubkey_root.as_ref())?;
573        self.profile_index.write_search_root(search_root.as_ref())?;
574        Ok(())
575    }
576
577    pub fn rebuild_profile_index_from_stored_events(&self) -> Result<usize> {
578        let public_events_root = self.public_events.events_root()?;
579        let ambient_events_root = self.ambient_events.events_root()?;
580        if public_events_root.is_none() && ambient_events_root.is_none() {
581            self.profile_index.write_by_pubkey_root(None)?;
582            self.profile_index.write_search_root(None)?;
583            return Ok(0);
584        }
585
586        let mut events = Vec::new();
587        for (bucket, root) in [
588            (&self.public_events, public_events_root),
589            (&self.ambient_events, ambient_events_root),
590        ] {
591            let Some(root) = root else {
592                continue;
593            };
594            let stored = block_on(bucket.event_store.list_by_kind_lossy(
595                Some(&root),
596                Kind::Metadata.as_u16() as u32,
597                ListEventsOptions::default(),
598            ))
599            .map_err(map_event_store_error)?;
600            events.extend(
601                stored
602                    .into_iter()
603                    .map(nostr_event_from_stored)
604                    .collect::<Result<Vec<_>>>()?,
605            );
606        }
607
608        let latest_count = self
609            .filtered_latest_metadata_events_by_pubkey(&events)?
610            .len();
611        self.rebuild_profile_index_for_events(&events)?;
612        Ok(latest_count)
613    }
614
615    pub async fn rebuild_profile_index_from_stored_events_async(&self) -> Result<usize> {
616        let public_events_root = self.public_events.events_root()?;
617        let ambient_events_root = self.ambient_events.events_root()?;
618        if public_events_root.is_none() && ambient_events_root.is_none() {
619            self.profile_index.write_by_pubkey_root(None)?;
620            self.profile_index.write_search_root(None)?;
621            return Ok(0);
622        }
623
624        let mut events = Vec::new();
625        for (bucket, root) in [
626            (&self.public_events, public_events_root),
627            (&self.ambient_events, ambient_events_root),
628        ] {
629            let Some(root) = root else {
630                continue;
631            };
632            let stored = bucket
633                .event_store
634                .list_by_kind_lossy(
635                    Some(&root),
636                    Kind::Metadata.as_u16() as u32,
637                    ListEventsOptions::default(),
638                )
639                .await
640                .map_err(map_event_store_error)?;
641            events.extend(
642                stored
643                    .into_iter()
644                    .map(nostr_event_from_stored)
645                    .collect::<Result<Vec<_>>>()?,
646            );
647        }
648
649        let latest_count = self
650            .filtered_latest_metadata_events_by_pubkey(&events)?
651            .len();
652        self.rebuild_profile_index_for_events_async(&events).await?;
653        Ok(latest_count)
654    }
655
656    pub fn rebuild_event_indexes_from_stored_events(&self) -> Result<(usize, usize)> {
657        let public_count =
658            self.rebuild_event_index_bucket_from_stored_events(&self.public_events)?;
659        let ambient_count =
660            self.rebuild_event_index_bucket_from_stored_events(&self.ambient_events)?;
661        self.rebuild_profile_index_from_stored_events()?;
662        Ok((public_count, ambient_count))
663    }
664
665    pub async fn rebuild_event_indexes_from_stored_events_async(&self) -> Result<(usize, usize)> {
666        let public_count = self
667            .rebuild_event_index_bucket_from_stored_events_async(&self.public_events)
668            .await?;
669        let ambient_count = self
670            .rebuild_event_index_bucket_from_stored_events_async(&self.ambient_events)
671            .await?;
672        self.rebuild_profile_index_from_stored_events_async()
673            .await?;
674        Ok((public_count, ambient_count))
675    }
676
677    fn rebuild_event_index_bucket_from_stored_events(
678        &self,
679        bucket: &EventIndexBucket,
680    ) -> Result<usize> {
681        let Some(root) = bucket.events_root()? else {
682            bucket.write_events_root(None)?;
683            return Ok(0);
684        };
685
686        let manifest = match block_on(bucket.event_store.get_manifest(Some(&root))) {
687            Ok(manifest) => manifest,
688            Err(err) => {
689                tracing::warn!(
690                    "Clearing invalid social graph event index root {} before rebuild: {}",
691                    hex::encode(root.hash),
692                    err
693                );
694                bucket.write_events_root(None)?;
695                return Ok(0);
696            }
697        };
698        if manifest.by_kind_time_author.is_none() {
699            let next_root = block_on(bucket.event_store.upgrade_manifest_indexes(Some(&root)))
700                .map_err(map_event_store_error)?;
701            if next_root.as_ref() != Some(&root) {
702                bucket.write_events_root(next_root.as_ref())?;
703                return Ok(0);
704            }
705        }
706
707        let stored = block_on(
708            bucket
709                .event_store
710                .list_recent_lossy(Some(&root), ListEventsOptions::default()),
711        )
712        .map_err(map_event_store_error)?;
713        let count = stored.len();
714        let next_root =
715            block_on(bucket.event_store.build(None, stored)).map_err(map_event_store_error)?;
716        bucket.write_events_root(next_root.as_ref())?;
717        Ok(count)
718    }
719
720    async fn rebuild_event_index_bucket_from_stored_events_async(
721        &self,
722        bucket: &EventIndexBucket,
723    ) -> Result<usize> {
724        let Some(root) = bucket.events_root()? else {
725            bucket.write_events_root(None)?;
726            return Ok(0);
727        };
728
729        let manifest = match bucket.event_store.get_manifest(Some(&root)).await {
730            Ok(manifest) => manifest,
731            Err(err) => {
732                tracing::warn!(
733                    "Clearing invalid social graph event index root {} before rebuild: {}",
734                    hex::encode(root.hash),
735                    err
736                );
737                bucket.write_events_root(None)?;
738                return Ok(0);
739            }
740        };
741        if manifest.by_kind_time_author.is_none() {
742            let next_root = bucket
743                .event_store
744                .upgrade_manifest_indexes(Some(&root))
745                .await
746                .map_err(map_event_store_error)?;
747            if next_root.as_ref() != Some(&root) {
748                bucket.write_events_root(next_root.as_ref())?;
749                return Ok(0);
750            }
751        }
752
753        let stored = bucket
754            .event_store
755            .list_recent_lossy(Some(&root), ListEventsOptions::default())
756            .await
757            .map_err(map_event_store_error)?;
758        let count = stored.len();
759        let next_root = bucket
760            .event_store
761            .build(None, stored)
762            .await
763            .map_err(map_event_store_error)?;
764        bucket.write_events_root(next_root.as_ref())?;
765        Ok(count)
766    }
767
768    fn update_profile_index_for_events(&self, events: &[Event]) -> Result<()> {
769        let latest_by_pubkey = latest_metadata_events_by_pubkey(events);
770        let threshold = self.profile_index_overmute_threshold();
771
772        if latest_by_pubkey.is_empty() {
773            return Ok(());
774        }
775
776        let mut by_pubkey_root = self.profile_index.by_pubkey_root()?;
777        let mut search_root = self.profile_index.search_root()?;
778        let mut changed = false;
779
780        for event in latest_by_pubkey.into_values() {
781            let overmuted = self.is_overmuted_user(&event.pubkey.to_bytes(), threshold)?;
782            let (next_by_pubkey_root, next_search_root, updated) = if overmuted {
783                self.profile_index.remove_profile_event(
784                    by_pubkey_root.as_ref(),
785                    search_root.as_ref(),
786                    &event.pubkey.to_hex(),
787                )?
788            } else {
789                self.profile_index.update_profile_event(
790                    by_pubkey_root.as_ref(),
791                    search_root.as_ref(),
792                    event,
793                    self.follow_distance(&event.pubkey.to_bytes())?,
794                )?
795            };
796            if updated {
797                by_pubkey_root = next_by_pubkey_root;
798                search_root = next_search_root;
799                changed = true;
800            }
801        }
802
803        if changed {
804            self.profile_index
805                .write_by_pubkey_root(by_pubkey_root.as_ref())?;
806            self.profile_index.write_search_root(search_root.as_ref())?;
807        }
808
809        Ok(())
810    }
811
812    fn filtered_latest_metadata_events_by_pubkey<'a>(
813        &self,
814        events: &'a [Event],
815    ) -> Result<BTreeMap<String, &'a Event>> {
816        let threshold = self.profile_index_overmute_threshold();
817        let mut latest_by_pubkey = BTreeMap::<String, &Event>::new();
818        for event in events.iter().filter(|event| event.kind == Kind::Metadata) {
819            if self.is_overmuted_user(&event.pubkey.to_bytes(), threshold)? {
820                continue;
821            }
822            let pubkey = event.pubkey.to_hex();
823            match latest_by_pubkey.get(&pubkey) {
824                Some(current) if compare_nostr_events(event, current).is_le() => {}
825                _ => {
826                    latest_by_pubkey.insert(pubkey, event);
827                }
828            }
829        }
830        Ok(latest_by_pubkey)
831    }
832
833    fn snapshot_chunks(&self, root: &[u8; 32], options: &BinaryBudget) -> Result<Vec<Bytes>> {
834        let state = {
835            let graph = self.graph.lock().unwrap();
836            graph.export_state().context("export social graph state")?
837        };
838        let mut graph = SocialGraph::from_state(state).context("rebuild social graph state")?;
839        let root_hex = hex::encode(root);
840        if graph.get_root() != root_hex {
841            graph
842                .set_root(&root_hex)
843                .context("set snapshot social graph root")?;
844        }
845        let chunks = graph
846            .to_binary_chunks_with_budget(*options)
847            .context("encode social graph snapshot")?;
848        Ok(chunks.into_iter().map(Bytes::from).collect())
849    }
850
851    fn ingest_event(&self, event: &Event) -> Result<()> {
852        self.ingest_event_with_storage_class(event, self.default_storage_class_for(event)?)
853    }
854
855    fn ingest_events(&self, events: &[Event]) -> Result<()> {
856        if events.is_empty() {
857            return Ok(());
858        }
859
860        let mut public = Vec::new();
861        let mut ambient = Vec::new();
862        for event in events {
863            match self.default_storage_class_for(event)? {
864                EventStorageClass::Public => public.push(event.clone()),
865                EventStorageClass::Ambient => ambient.push(event.clone()),
866            }
867        }
868
869        if !public.is_empty() {
870            self.ingest_events_with_storage_class(&public, EventStorageClass::Public)?;
871        }
872        if !ambient.is_empty() {
873            self.ingest_events_with_storage_class(&ambient, EventStorageClass::Ambient)?;
874        }
875
876        Ok(())
877    }
878
879    fn apply_graph_events_only(&self, events: &[Event]) -> Result<()> {
880        let graph_events = events
881            .iter()
882            .filter(|event| is_social_graph_event(event.kind))
883            .collect::<Vec<_>>();
884        if graph_events.is_empty() {
885            return Ok(());
886        }
887
888        {
889            let mut graph = self.graph.lock().unwrap();
890            let mut snapshot = SocialGraph::from_state(
891                graph
892                    .export_state()
893                    .context("export social graph state for graph-only ingest")?,
894            )
895            .context("rebuild social graph state for graph-only ingest")?;
896            for event in graph_events {
897                snapshot.handle_event(&graph_event_from_nostr(event), true, 0.0);
898            }
899            graph
900                .replace_state(&snapshot.export_state())
901                .context("replace graph-only social graph state")?;
902        }
903        self.invalidate_distance_cache();
904        Ok(())
905    }
906
907    fn query_events(&self, filter: &Filter, limit: usize) -> Result<Vec<Event>> {
908        self.query_events_in_scope(filter, limit, EventQueryScope::All)
909    }
910
911    fn default_storage_class_for(&self, event: &Event) -> Result<EventStorageClass> {
912        let graph = self.graph.lock().unwrap();
913        let root_hex = graph.get_root().context("read social graph root")?;
914        if root_hex != DEFAULT_ROOT_HEX && root_hex == event.pubkey.to_hex() {
915            return Ok(EventStorageClass::Public);
916        }
917        Ok(EventStorageClass::Ambient)
918    }
919
920    fn bucket(&self, storage_class: EventStorageClass) -> &EventIndexBucket {
921        match storage_class {
922            EventStorageClass::Public => &self.public_events,
923            EventStorageClass::Ambient => &self.ambient_events,
924        }
925    }
926
927    fn ingest_event_with_storage_class(
928        &self,
929        event: &Event,
930        storage_class: EventStorageClass,
931    ) -> Result<()> {
932        let current_root = self.bucket(storage_class).events_root_for_write()?;
933        let next_root = self
934            .bucket(storage_class)
935            .store_event(current_root.as_ref(), event)?;
936        self.bucket(storage_class)
937            .write_events_root(Some(&next_root))?;
938
939        if is_social_graph_event(event.kind) {
940            {
941                let mut graph = self.graph.lock().unwrap();
942                graph
943                    .handle_event(&graph_event_from_nostr(event), true, 0.0)
944                    .context("ingest social graph event into nostr-social-graph")?;
945            }
946            self.invalidate_distance_cache();
947        }
948
949        self.update_profile_index_for_events(std::slice::from_ref(event))?;
950
951        Ok(())
952    }
953
954    fn ingest_events_with_storage_class(
955        &self,
956        events: &[Event],
957        storage_class: EventStorageClass,
958    ) -> Result<()> {
959        if events.is_empty() {
960            return Ok(());
961        }
962
963        let bucket = self.bucket(storage_class);
964        let current_root = bucket.events_root_for_write()?;
965        let stored_events = events
966            .iter()
967            .map(stored_event_from_nostr)
968            .collect::<Vec<_>>();
969        let next_root = block_on(
970            bucket
971                .event_store
972                .build(current_root.as_ref(), stored_events),
973        )
974        .map_err(map_event_store_error)?;
975        bucket.write_events_root(next_root.as_ref())?;
976
977        let graph_events = events
978            .iter()
979            .filter(|event| is_social_graph_event(event.kind))
980            .collect::<Vec<_>>();
981        if !graph_events.is_empty() {
982            let mut graph = self.graph.lock().unwrap();
983            let mut snapshot = SocialGraph::from_state(
984                graph
985                    .export_state()
986                    .context("export social graph state for batch ingest")?,
987            )
988            .context("rebuild social graph state for batch ingest")?;
989            for event in graph_events {
990                snapshot.handle_event(&graph_event_from_nostr(event), true, 0.0);
991            }
992            graph
993                .replace_state(&snapshot.export_state())
994                .context("replace batched social graph state")?;
995            self.invalidate_distance_cache();
996        }
997
998        self.update_profile_index_for_events(events)?;
999
1000        Ok(())
1001    }
1002
1003    pub(crate) fn query_events_in_scope(
1004        &self,
1005        filter: &Filter,
1006        limit: usize,
1007        scope: EventQueryScope,
1008    ) -> Result<Vec<Event>> {
1009        if limit == 0 {
1010            return Ok(Vec::new());
1011        }
1012
1013        let buckets: &[&EventIndexBucket] = match scope {
1014            EventQueryScope::PublicOnly => &[&self.public_events],
1015            EventQueryScope::AmbientOnly => &[&self.ambient_events],
1016            EventQueryScope::All => &[&self.public_events, &self.ambient_events],
1017        };
1018
1019        let mut candidates = Vec::new();
1020        for bucket in buckets {
1021            candidates.extend(bucket.query_events(filter, limit)?);
1022        }
1023
1024        let mut deduped = dedupe_events(candidates);
1025        deduped.retain(|event| filter.match_event(event));
1026        deduped.truncate(limit);
1027        Ok(deduped)
1028    }
1029}
1030
1031impl SocialGraphBackend for SocialGraphStore {
1032    fn stats(&self) -> Result<SocialGraphStats> {
1033        SocialGraphStore::stats(self)
1034    }
1035
1036    fn users_by_follow_distance(&self, distance: u32) -> Result<Vec<[u8; 32]>> {
1037        SocialGraphStore::users_by_follow_distance(self, distance)
1038    }
1039
1040    fn follow_distance(&self, pk_bytes: &[u8; 32]) -> Result<Option<u32>> {
1041        SocialGraphStore::follow_distance(self, pk_bytes)
1042    }
1043
1044    fn follow_list_created_at(&self, owner: &[u8; 32]) -> Result<Option<u64>> {
1045        SocialGraphStore::follow_list_created_at(self, owner)
1046    }
1047
1048    fn followed_targets(&self, owner: &[u8; 32]) -> Result<UserSet> {
1049        SocialGraphStore::followed_targets(self, owner)
1050    }
1051
1052    fn is_overmuted_user(&self, user_pk: &[u8; 32], threshold: f64) -> Result<bool> {
1053        SocialGraphStore::is_overmuted_user(self, user_pk, threshold)
1054    }
1055
1056    fn profile_search_root(&self) -> Result<Option<Cid>> {
1057        SocialGraphStore::profile_search_root(self)
1058    }
1059
1060    fn snapshot_chunks(&self, root: &[u8; 32], options: &BinaryBudget) -> Result<Vec<Bytes>> {
1061        SocialGraphStore::snapshot_chunks(self, root, options)
1062    }
1063
1064    fn ingest_event(&self, event: &Event) -> Result<()> {
1065        SocialGraphStore::ingest_event(self, event)
1066    }
1067
1068    fn ingest_event_with_storage_class(
1069        &self,
1070        event: &Event,
1071        storage_class: EventStorageClass,
1072    ) -> Result<()> {
1073        SocialGraphStore::ingest_event_with_storage_class(self, event, storage_class)
1074    }
1075
1076    fn ingest_events(&self, events: &[Event]) -> Result<()> {
1077        SocialGraphStore::ingest_events(self, events)
1078    }
1079
1080    fn ingest_events_with_storage_class(
1081        &self,
1082        events: &[Event],
1083        storage_class: EventStorageClass,
1084    ) -> Result<()> {
1085        SocialGraphStore::ingest_events_with_storage_class(self, events, storage_class)
1086    }
1087
1088    fn ingest_graph_events(&self, events: &[Event]) -> Result<()> {
1089        SocialGraphStore::apply_graph_events_only(self, events)
1090    }
1091
1092    fn query_events(&self, filter: &Filter, limit: usize) -> Result<Vec<Event>> {
1093        SocialGraphStore::query_events(self, filter, limit)
1094    }
1095}
1096
1097impl NostrSocialGraphBackend for SocialGraphStore {
1098    type Error = UpstreamGraphBackendError;
1099
1100    fn get_root(&self) -> std::result::Result<String, Self::Error> {
1101        let graph = self.graph.lock().unwrap();
1102        graph
1103            .get_root()
1104            .context("read social graph root")
1105            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1106    }
1107
1108    fn set_root(&mut self, root: &str) -> std::result::Result<(), Self::Error> {
1109        let root_bytes =
1110            decode_pubkey(root).map_err(|err| UpstreamGraphBackendError(err.to_string()))?;
1111        SocialGraphStore::set_root(self, &root_bytes)
1112            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1113    }
1114
1115    fn handle_event(
1116        &mut self,
1117        event: &GraphEvent,
1118        allow_unknown_authors: bool,
1119        overmute_threshold: f64,
1120    ) -> std::result::Result<(), Self::Error> {
1121        {
1122            let mut graph = self.graph.lock().unwrap();
1123            graph
1124                .handle_event(event, allow_unknown_authors, overmute_threshold)
1125                .context("ingest social graph event into heed backend")
1126                .map_err(|err| UpstreamGraphBackendError(err.to_string()))?;
1127        }
1128        self.invalidate_distance_cache();
1129        Ok(())
1130    }
1131
1132    fn get_follow_distance(&self, user: &str) -> std::result::Result<u32, Self::Error> {
1133        let graph = self.graph.lock().unwrap();
1134        graph
1135            .get_follow_distance(user)
1136            .context("read social graph follow distance")
1137            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1138    }
1139
1140    fn is_following(
1141        &self,
1142        follower: &str,
1143        followed_user: &str,
1144    ) -> std::result::Result<bool, Self::Error> {
1145        let graph = self.graph.lock().unwrap();
1146        graph
1147            .is_following(follower, followed_user)
1148            .context("read social graph following edge")
1149            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1150    }
1151
1152    fn get_followed_by_user(&self, user: &str) -> std::result::Result<Vec<String>, Self::Error> {
1153        let graph = self.graph.lock().unwrap();
1154        graph
1155            .get_followed_by_user(user)
1156            .context("read followed-by-user list")
1157            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1158    }
1159
1160    fn get_followers_by_user(&self, user: &str) -> std::result::Result<Vec<String>, Self::Error> {
1161        let graph = self.graph.lock().unwrap();
1162        graph
1163            .get_followers_by_user(user)
1164            .context("read followers-by-user list")
1165            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1166    }
1167
1168    fn get_muted_by_user(&self, user: &str) -> std::result::Result<Vec<String>, Self::Error> {
1169        let graph = self.graph.lock().unwrap();
1170        graph
1171            .get_muted_by_user(user)
1172            .context("read muted-by-user list")
1173            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1174    }
1175
1176    fn get_user_muted_by(&self, user: &str) -> std::result::Result<Vec<String>, Self::Error> {
1177        let graph = self.graph.lock().unwrap();
1178        graph
1179            .get_user_muted_by(user)
1180            .context("read user-muted-by list")
1181            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1182    }
1183
1184    fn get_follow_list_created_at(
1185        &self,
1186        user: &str,
1187    ) -> std::result::Result<Option<u64>, Self::Error> {
1188        let graph = self.graph.lock().unwrap();
1189        graph
1190            .get_follow_list_created_at(user)
1191            .context("read social graph follow list timestamp")
1192            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1193    }
1194
1195    fn get_mute_list_created_at(
1196        &self,
1197        user: &str,
1198    ) -> std::result::Result<Option<u64>, Self::Error> {
1199        let graph = self.graph.lock().unwrap();
1200        graph
1201            .get_mute_list_created_at(user)
1202            .context("read social graph mute list timestamp")
1203            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1204    }
1205
1206    fn is_overmuted(&self, user: &str, threshold: f64) -> std::result::Result<bool, Self::Error> {
1207        let graph = self.graph.lock().unwrap();
1208        graph
1209            .is_overmuted(user, threshold)
1210            .context("check social graph overmute")
1211            .map_err(|err| UpstreamGraphBackendError(err.to_string()))
1212    }
1213}
1214
1215impl<T> SocialGraphBackend for Arc<T>
1216where
1217    T: SocialGraphBackend + ?Sized,
1218{
1219    fn stats(&self) -> Result<SocialGraphStats> {
1220        self.as_ref().stats()
1221    }
1222
1223    fn users_by_follow_distance(&self, distance: u32) -> Result<Vec<[u8; 32]>> {
1224        self.as_ref().users_by_follow_distance(distance)
1225    }
1226
1227    fn follow_distance(&self, pk_bytes: &[u8; 32]) -> Result<Option<u32>> {
1228        self.as_ref().follow_distance(pk_bytes)
1229    }
1230
1231    fn follow_list_created_at(&self, owner: &[u8; 32]) -> Result<Option<u64>> {
1232        self.as_ref().follow_list_created_at(owner)
1233    }
1234
1235    fn followed_targets(&self, owner: &[u8; 32]) -> Result<UserSet> {
1236        self.as_ref().followed_targets(owner)
1237    }
1238
1239    fn is_overmuted_user(&self, user_pk: &[u8; 32], threshold: f64) -> Result<bool> {
1240        self.as_ref().is_overmuted_user(user_pk, threshold)
1241    }
1242
1243    fn profile_search_root(&self) -> Result<Option<Cid>> {
1244        self.as_ref().profile_search_root()
1245    }
1246
1247    fn snapshot_chunks(&self, root: &[u8; 32], options: &BinaryBudget) -> Result<Vec<Bytes>> {
1248        self.as_ref().snapshot_chunks(root, options)
1249    }
1250
1251    fn ingest_event(&self, event: &Event) -> Result<()> {
1252        self.as_ref().ingest_event(event)
1253    }
1254
1255    fn ingest_event_with_storage_class(
1256        &self,
1257        event: &Event,
1258        storage_class: EventStorageClass,
1259    ) -> Result<()> {
1260        self.as_ref()
1261            .ingest_event_with_storage_class(event, storage_class)
1262    }
1263
1264    fn ingest_events(&self, events: &[Event]) -> Result<()> {
1265        self.as_ref().ingest_events(events)
1266    }
1267
1268    fn ingest_events_with_storage_class(
1269        &self,
1270        events: &[Event],
1271        storage_class: EventStorageClass,
1272    ) -> Result<()> {
1273        self.as_ref()
1274            .ingest_events_with_storage_class(events, storage_class)
1275    }
1276
1277    fn ingest_graph_events(&self, events: &[Event]) -> Result<()> {
1278        self.as_ref().ingest_graph_events(events)
1279    }
1280
1281    fn query_events(&self, filter: &Filter, limit: usize) -> Result<Vec<Event>> {
1282        self.as_ref().query_events(filter, limit)
1283    }
1284}
1285
1286fn should_replace_placeholder_root(graph: &HeedSocialGraph) -> Result<bool> {
1287    if graph.get_root().context("read current social graph root")? != DEFAULT_ROOT_HEX {
1288        return Ok(false);
1289    }
1290
1291    let GraphStats {
1292        users,
1293        follows,
1294        mutes,
1295        ..
1296    } = graph.size().context("size social graph")?;
1297    Ok(users <= 1 && follows == 0 && mutes == 0)
1298}
1299
1300fn decode_pubkey_set(values: Vec<String>) -> Result<UserSet> {
1301    let mut set = UserSet::new();
1302    for value in values {
1303        set.insert(decode_pubkey(&value)?);
1304    }
1305    Ok(set)
1306}
1307
1308fn decode_pubkey(value: &str) -> Result<[u8; 32]> {
1309    let mut bytes = [0u8; 32];
1310    hex::decode_to_slice(value, &mut bytes)
1311        .with_context(|| format!("decode social graph pubkey {value}"))?;
1312    Ok(bytes)
1313}
1314
1315fn is_social_graph_event(kind: Kind) -> bool {
1316    kind == Kind::ContactList || kind == Kind::MuteList
1317}
1318
1319fn graph_event_from_nostr(event: &Event) -> GraphEvent {
1320    GraphEvent {
1321        created_at: event.created_at.as_u64(),
1322        content: event.content.clone(),
1323        tags: event
1324            .tags
1325            .iter()
1326            .map(|tag| tag.as_slice().to_vec())
1327            .collect(),
1328        kind: event.kind.as_u16() as u32,
1329        pubkey: event.pubkey.to_hex(),
1330        id: event.id.to_hex(),
1331        sig: event.sig.to_string(),
1332    }
1333}
1334
1335fn stored_event_from_nostr(event: &Event) -> StoredNostrEvent {
1336    StoredNostrEvent {
1337        id: event.id.to_hex(),
1338        pubkey: event.pubkey.to_hex(),
1339        created_at: event.created_at.as_u64(),
1340        kind: event.kind.as_u16() as u32,
1341        tags: event
1342            .tags
1343            .iter()
1344            .map(|tag| tag.as_slice().to_vec())
1345            .collect(),
1346        content: event.content.clone(),
1347        sig: event.sig.to_string(),
1348    }
1349}
1350
1351fn nostr_event_from_stored(event: StoredNostrEvent) -> Result<Event> {
1352    let value = serde_json::json!({
1353        "id": event.id,
1354        "pubkey": event.pubkey,
1355        "created_at": event.created_at,
1356        "kind": event.kind,
1357        "tags": event.tags,
1358        "content": event.content,
1359        "sig": event.sig,
1360    });
1361    Event::from_json(value.to_string()).context("decode stored nostr event")
1362}
1363
1364pub(crate) fn stored_event_to_nostr_event(event: StoredNostrEvent) -> Result<Event> {
1365    nostr_event_from_stored(event)
1366}
1367
1368fn encode_cid(cid: &Cid) -> Result<Vec<u8>> {
1369    rmp_serde::to_vec_named(&StoredCid {
1370        hash: cid.hash,
1371        key: cid.key,
1372    })
1373    .context("encode social graph events root")
1374}
1375
1376fn decode_cid(bytes: &[u8]) -> Result<Option<Cid>> {
1377    let stored: StoredCid =
1378        rmp_serde::from_slice(bytes).context("decode social graph events root")?;
1379    Ok(Some(Cid {
1380        hash: stored.hash,
1381        key: stored.key,
1382    }))
1383}
1384
1385fn read_root_file(path: &Path) -> Result<Option<Cid>> {
1386    let Ok(bytes) = std::fs::read(path) else {
1387        return Ok(None);
1388    };
1389    decode_cid(&bytes)
1390}
1391
1392fn write_root_file(path: &Path, root: Option<&Cid>) -> Result<()> {
1393    let Some(root) = root else {
1394        if path.exists() {
1395            std::fs::remove_file(path)?;
1396        }
1397        return Ok(());
1398    };
1399
1400    let encoded = encode_cid(root)?;
1401    let tmp_path = path.with_extension("tmp");
1402    std::fs::write(&tmp_path, encoded)?;
1403    std::fs::rename(tmp_path, path)?;
1404    Ok(())
1405}
1406
1407fn normalize_profile_name(value: &serde_json::Value) -> Option<String> {
1408    let raw = value.as_str()?;
1409    let trimmed = raw.split_whitespace().collect::<Vec<_>>().join(" ");
1410    if trimmed.is_empty() {
1411        return None;
1412    }
1413    Some(trimmed.chars().take(PROFILE_NAME_MAX_LENGTH).collect())
1414}
1415
1416fn extract_profile_names(profile: &serde_json::Map<String, serde_json::Value>) -> Vec<String> {
1417    let mut names = Vec::new();
1418    let mut seen = HashSet::new();
1419
1420    for key in ["display_name", "displayName", "name", "username"] {
1421        let Some(value) = profile.get(key).and_then(normalize_profile_name) else {
1422            continue;
1423        };
1424        let lowered = value.to_lowercase();
1425        if seen.insert(lowered) {
1426            names.push(value);
1427        }
1428    }
1429
1430    names
1431}
1432
1433fn should_reject_profile_nip05(local_part: &str, primary_name: &str) -> bool {
1434    if local_part.len() == 1 || local_part.starts_with("npub1") {
1435        return true;
1436    }
1437
1438    primary_name
1439        .to_lowercase()
1440        .split_whitespace()
1441        .collect::<String>()
1442        .contains(local_part)
1443}
1444
1445fn normalize_profile_nip05(
1446    profile: &serde_json::Map<String, serde_json::Value>,
1447    primary_name: Option<&str>,
1448) -> Option<String> {
1449    let raw = profile.get("nip05")?.as_str()?;
1450    let local_part = raw.split('@').next()?.trim().to_lowercase();
1451    if local_part.is_empty() {
1452        return None;
1453    }
1454    let truncated: String = local_part.chars().take(PROFILE_NAME_MAX_LENGTH).collect();
1455    if truncated.is_empty() {
1456        return None;
1457    }
1458    if primary_name.is_some_and(|name| should_reject_profile_nip05(&truncated, name)) {
1459        return None;
1460    }
1461    Some(truncated)
1462}
1463
1464fn is_search_stop_word(word: &str) -> bool {
1465    matches!(
1466        word,
1467        "a" | "an"
1468            | "the"
1469            | "and"
1470            | "or"
1471            | "but"
1472            | "in"
1473            | "on"
1474            | "at"
1475            | "to"
1476            | "for"
1477            | "of"
1478            | "with"
1479            | "by"
1480            | "from"
1481            | "is"
1482            | "it"
1483            | "as"
1484            | "be"
1485            | "was"
1486            | "are"
1487            | "this"
1488            | "that"
1489            | "these"
1490            | "those"
1491            | "i"
1492            | "you"
1493            | "he"
1494            | "she"
1495            | "we"
1496            | "they"
1497            | "my"
1498            | "your"
1499            | "his"
1500            | "her"
1501            | "its"
1502            | "our"
1503            | "their"
1504            | "what"
1505            | "which"
1506            | "who"
1507            | "whom"
1508            | "how"
1509            | "when"
1510            | "where"
1511            | "why"
1512            | "will"
1513            | "would"
1514            | "could"
1515            | "should"
1516            | "can"
1517            | "may"
1518            | "might"
1519            | "must"
1520            | "have"
1521            | "has"
1522            | "had"
1523            | "do"
1524            | "does"
1525            | "did"
1526            | "been"
1527            | "being"
1528            | "get"
1529            | "got"
1530            | "just"
1531            | "now"
1532            | "then"
1533            | "so"
1534            | "if"
1535            | "not"
1536            | "no"
1537            | "yes"
1538            | "all"
1539            | "any"
1540            | "some"
1541            | "more"
1542            | "most"
1543            | "other"
1544            | "into"
1545            | "over"
1546            | "after"
1547            | "before"
1548            | "about"
1549            | "up"
1550            | "down"
1551            | "out"
1552            | "off"
1553            | "through"
1554            | "during"
1555            | "under"
1556            | "again"
1557            | "further"
1558            | "once"
1559    )
1560}
1561
1562fn is_pure_search_number(word: &str) -> bool {
1563    if !word.chars().all(|ch| ch.is_ascii_digit()) {
1564        return false;
1565    }
1566    !(word.len() == 4
1567        && word
1568            .parse::<u16>()
1569            .is_ok_and(|year| (1900..=2099).contains(&year)))
1570}
1571
1572fn split_compound_search_word(word: &str) -> Vec<String> {
1573    let mut parts = Vec::new();
1574    let mut current = String::new();
1575    let chars: Vec<char> = word.chars().collect();
1576
1577    for (index, ch) in chars.iter().copied().enumerate() {
1578        let split_before = current.chars().last().is_some_and(|prev| {
1579            (prev.is_lowercase() && ch.is_uppercase())
1580                || (prev.is_ascii_digit() && ch.is_alphabetic())
1581                || (prev.is_alphabetic() && ch.is_ascii_digit())
1582                || (prev.is_uppercase()
1583                    && ch.is_uppercase()
1584                    && chars.get(index + 1).is_some_and(|next| next.is_lowercase()))
1585        });
1586
1587        if split_before && !current.is_empty() {
1588            parts.push(std::mem::take(&mut current));
1589        }
1590
1591        current.push(ch);
1592    }
1593
1594    if !current.is_empty() {
1595        parts.push(current);
1596    }
1597
1598    parts
1599}
1600
1601fn parse_search_keywords(text: &str) -> Vec<String> {
1602    let mut keywords = Vec::new();
1603    let mut seen = HashSet::new();
1604
1605    for word in text
1606        .split(|ch: char| !ch.is_alphanumeric())
1607        .filter(|word| !word.is_empty())
1608    {
1609        let mut variants = Vec::with_capacity(1 + word.len() / 4);
1610        variants.push(word.to_lowercase());
1611        variants.extend(
1612            split_compound_search_word(word)
1613                .into_iter()
1614                .map(|part| part.to_lowercase()),
1615        );
1616
1617        for lowered in variants {
1618            if lowered.chars().count() < 2
1619                || is_search_stop_word(&lowered)
1620                || is_pure_search_number(&lowered)
1621            {
1622                continue;
1623            }
1624            if seen.insert(lowered.clone()) {
1625                keywords.push(lowered);
1626            }
1627        }
1628    }
1629
1630    keywords
1631}
1632
1633fn profile_search_terms_for_event(event: &Event) -> Vec<String> {
1634    let profile = match serde_json::from_str::<serde_json::Value>(&event.content) {
1635        Ok(serde_json::Value::Object(profile)) => profile,
1636        _ => serde_json::Map::new(),
1637    };
1638    let names = extract_profile_names(&profile);
1639    let primary_name = names.first().map(String::as_str);
1640    let mut parts = Vec::new();
1641    if let Some(name) = primary_name {
1642        parts.push(name.to_string());
1643    }
1644    if let Some(nip05) = normalize_profile_nip05(&profile, primary_name) {
1645        parts.push(nip05);
1646    }
1647    parts.push(event.pubkey.to_hex());
1648    if names.len() > 1 {
1649        parts.extend(names.into_iter().skip(1));
1650    }
1651    parse_search_keywords(&parts.join(" "))
1652}
1653
1654fn compare_nostr_events(left: &Event, right: &Event) -> std::cmp::Ordering {
1655    left.created_at
1656        .as_u64()
1657        .cmp(&right.created_at.as_u64())
1658        .then_with(|| left.id.to_hex().cmp(&right.id.to_hex()))
1659}
1660
1661fn map_event_store_error(err: NostrEventStoreError) -> anyhow::Error {
1662    anyhow::anyhow!("nostr event store error: {err}")
1663}
1664
1665fn ensure_social_graph_mapsize(db_dir: &Path, requested_bytes: u64) -> Result<()> {
1666    let requested = requested_bytes.max(DEFAULT_SOCIALGRAPH_MAP_SIZE_BYTES);
1667    let page_size = page_size_bytes() as u64;
1668    let rounded = requested
1669        .checked_add(page_size.saturating_sub(1))
1670        .map(|size| size / page_size * page_size)
1671        .unwrap_or(requested);
1672    let map_size = usize::try_from(rounded).context("social graph mapsize exceeds usize")?;
1673
1674    let env = unsafe {
1675        heed::EnvOpenOptions::new()
1676            .map_size(DEFAULT_SOCIALGRAPH_MAP_SIZE_BYTES as usize)
1677            .max_dbs(SOCIALGRAPH_MAX_DBS)
1678            .open(db_dir)
1679    }
1680    .context("open social graph LMDB env for resize")?;
1681    if env.info().map_size < map_size {
1682        unsafe { env.resize(map_size) }.context("resize social graph LMDB env")?;
1683    }
1684
1685    Ok(())
1686}
1687
1688fn page_size_bytes() -> usize {
1689    page_size::get_granularity()
1690}
1691
1692#[cfg(test)]
1693mod tests;