330 lines
11 KiB
Rust
330 lines
11 KiB
Rust
use std::cell::RefCell;
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use std::collections::{HashMap, HashSet};
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use std::time::{Duration, Instant};
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use anyhow::Error;
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use flume::{Receiver, RecvTimeoutError, Sender};
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use gpui::{App, AppContext, Context, Entity, Global, SharedString, Subscription, Task};
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use nostr_sdk::prelude::*;
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use utils::shorten_pubkey;
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use crate::backend::{Backend, BackendEvent, sync_bootstrap_only};
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/// A user profile (kind `0` metadata), as plain data for the UI.
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#[derive(Debug, Clone)]
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pub struct Profile {
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public_key: PublicKey,
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metadata: Metadata,
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}
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impl Profile {
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pub fn new(public_key: PublicKey, metadata: Metadata) -> Self {
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Self {
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public_key,
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metadata,
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}
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}
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pub fn public_key(&self) -> PublicKey {
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self.public_key
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}
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pub fn metadata(&self) -> &Metadata {
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&self.metadata
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}
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/// Display name, falling back to `name`, then a shortened npub.
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pub fn name(&self) -> SharedString {
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if let Some(display_name) = self.metadata.display_name.as_ref()
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&& !display_name.is_empty()
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{
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return SharedString::from(display_name.trim().to_owned());
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}
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if let Some(name) = self.metadata.name.as_ref()
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&& !name.is_empty()
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{
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return SharedString::from(name.trim().to_owned());
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}
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SharedString::from(shorten_pubkey(self.public_key, 4))
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}
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/// Avatar URL, if set.
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pub fn picture(&self) -> Option<SharedString> {
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self.metadata
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.picture
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.as_ref()
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.filter(|p| !p.is_empty())
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.map(|p| SharedString::from(p.clone()))
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}
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}
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/// Message from the fetch task to the main thread.
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enum Dispatch {
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/// A batched sync finished; re-read seen profiles from the database.
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Synced,
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}
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/// How long to wait for more requests before firing a batched sync.
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const BATCH_TIMEOUT: Duration = Duration::from_millis(500);
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/// Global profile cache. Profiles are fetched in batches and kept as plain
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/// data; the whole store notifies on change.
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pub struct ProfileStore {
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profiles: HashMap<PublicKey, Profile>,
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/// Public keys we've already requested this session (main thread only).
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seen: RefCell<HashSet<PublicKey>>,
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/// Sender for queuing fetch requests, batched by a background task.
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sender: Sender<PublicKey>,
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tasks: Vec<Task<Result<(), Error>>>,
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_subscription: Subscription,
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}
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struct GlobalProfileStore(Entity<ProfileStore>);
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impl Global for GlobalProfileStore {}
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impl ProfileStore {
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/// Retrieve the global profile store.
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pub fn global(cx: &App) -> Entity<Self> {
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cx.global::<GlobalProfileStore>().0.clone()
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}
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pub(crate) fn set_global(entity: Entity<Self>, cx: &mut App) {
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cx.set_global(GlobalProfileStore(entity));
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}
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pub(crate) fn new(cx: &mut Context<Self>) -> Self {
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let backend = Backend::global(cx);
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let subscription = cx.subscribe(&backend, |this, _backend, event, cx| match event {
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BackendEvent::NostrUpdate(update) if update.kind == Kind::Metadata => {
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this.apply_author(update.author, cx);
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}
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BackendEvent::Published(event) if event.kind == Kind::Metadata => {
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let metadata = Metadata::from_json(&event.content).unwrap_or_default();
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this.profiles
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.insert(event.pubkey, Profile::new(event.pubkey, metadata));
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cx.notify();
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}
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_ => {}
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});
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// Fetch requests are queued on a channel and synced in batches by a
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// background task.
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let client = backend.read(cx).client();
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let (sender, receiver) = flume::unbounded::<PublicKey>();
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let (dispatch_tx, dispatch_rx) = flume::unbounded::<Dispatch>();
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let mut tasks = Vec::new();
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tasks.push(cx.background_spawn(async move {
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Self::handle_requests(&client, &dispatch_tx, &receiver).await
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}));
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// Re-read seen profiles from the database after each batch sync.
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tasks.push(cx.spawn(async move |this, cx| {
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while let Ok(Dispatch::Synced) = dispatch_rx.recv_async().await {
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this.update(cx, |this, cx| this.apply_seen(cx)).ok();
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}
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Ok(())
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}));
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let mut store = Self {
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profiles: HashMap::new(),
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seen: RefCell::new(HashSet::new()),
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sender,
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tasks,
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_subscription: subscription,
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};
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store.load(cx);
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store
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}
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/// Get a profile. Returns a placeholder (default metadata) and queues a
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/// fetch if the profile isn't cached yet.
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pub fn get(&self, public_key: &PublicKey) -> Profile {
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if let Some(profile) = self.profiles.get(public_key) {
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return profile.clone();
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}
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let public_key = *public_key;
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if self.seen.borrow_mut().insert(public_key)
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&& let Err(e) = self.sender.send(public_key)
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{
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log::warn!("failed to queue profile fetch: {e}");
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}
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Profile::new(public_key, Metadata::default())
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}
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/// Load recently seen profiles from the local database.
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fn load(&mut self, cx: &mut Context<Self>) {
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let client = Backend::global(cx).read(cx).client();
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let work = cx.background_spawn(async move {
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let filter = Filter::new().kind(Kind::Metadata).limit(200);
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let events = client.database().query(filter).await?;
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// Parse off the main thread; only plain profiles cross back.
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let profiles: Vec<Profile> = events
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.into_iter()
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.map(|event| {
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let metadata = Metadata::from_json(&event.content).unwrap_or_default();
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Profile::new(event.pubkey, metadata)
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})
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.collect();
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Ok::<_, Error>(profiles)
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});
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self.tasks.push(cx.spawn(async move |this, cx| {
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let profiles = work.await?;
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this.update(cx, |this, cx| {
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for profile in profiles {
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this.profiles.insert(profile.public_key(), profile);
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}
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cx.notify();
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})?;
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Ok(())
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}));
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}
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/// Re-read the latest metadata of an author from the local database.
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fn apply_author(&mut self, public_key: PublicKey, cx: &mut Context<Self>) {
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let client = Backend::global(cx).read(cx).client();
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let work = cx.background_spawn(async move {
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let filter = Filter::new().kind(Kind::Metadata).author(public_key);
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let events = client.database().query(filter).await?;
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// Parse off the main thread; only the profile crosses back.
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let profile = events
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.into_iter()
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.max_by_key(|e| e.created_at)
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.map(|event| {
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let metadata = Metadata::from_json(event.content).unwrap_or_default();
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Profile::new(event.pubkey, metadata)
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});
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Ok::<_, Error>(profile)
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});
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self.tasks.push(cx.spawn(async move |this, cx| {
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let profile = work.await?;
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this.update(cx, |this, cx| {
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if let Some(profile) = profile {
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this.profiles.insert(profile.public_key(), profile);
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cx.notify();
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}
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})?;
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Ok(())
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}));
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}
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/// Re-read the latest metadata of every requested author from the local
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/// database (used after a sync, which produces no NostrUpdate events).
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fn apply_seen(&mut self, cx: &mut Context<Self>) {
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let authors: Vec<PublicKey> = self.seen.borrow().iter().copied().collect();
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if authors.is_empty() {
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return;
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}
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let client = Backend::global(cx).read(cx).client();
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let work = cx.background_spawn(async move {
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let filter = Filter::new().kind(Kind::Metadata).authors(authors);
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let events = client.database().query(filter).await?;
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// Pick the latest metadata per author off the main thread.
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let mut latest: HashMap<PublicKey, (Timestamp, Metadata)> = HashMap::new();
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for event in events {
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match latest.get(&event.pubkey) {
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Some((ts, _)) if *ts >= event.created_at => {}
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_ => {
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latest.insert(
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event.pubkey,
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(
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event.created_at,
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Metadata::from_json(&event.content).unwrap_or_default(),
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),
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);
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}
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}
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}
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let profiles: Vec<Profile> = latest
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.into_iter()
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.map(|(public_key, (_, metadata))| Profile::new(public_key, metadata))
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.collect();
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Ok::<_, Error>(profiles)
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});
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self.tasks.push(cx.spawn(async move |this, cx| {
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let profiles = work.await?;
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this.update(cx, |this, cx| {
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for profile in profiles {
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this.profiles.insert(profile.public_key(), profile);
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}
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cx.notify();
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})?;
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Ok(())
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}));
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}
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/// Sync metadata for requested authors in batches, debounced to collect
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/// requests. Runs on a background thread; results are dispatched to the
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/// main thread, which re-reads the database.
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async fn handle_requests(
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client: &Client,
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dispatch: &Sender<Dispatch>,
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receiver: &Receiver<PublicKey>,
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) -> Result<(), Error> {
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let mut batch: HashSet<PublicKey> = HashSet::new();
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loop {
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// Wait for the first request of a batch.
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match receiver.recv_timeout(BATCH_TIMEOUT) {
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Ok(public_key) => {
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batch.insert(public_key);
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}
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Err(RecvTimeoutError::Disconnected) => return Ok(()),
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Err(RecvTimeoutError::Timeout) => continue,
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};
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// Collect everything that arrives within the debounce window.
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let deadline = Instant::now() + BATCH_TIMEOUT;
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while let Ok(public_key) = receiver.recv_deadline(deadline) {
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batch.insert(public_key);
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}
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let filter = Filter::new()
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.kind(Kind::Metadata)
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.authors(batch.drain().collect::<Vec<PublicKey>>());
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// Negentropy-sync with the bootstrap relays. Synced events are
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// written to the database directly (no NostrUpdate), so re-apply
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// from the database afterwards.
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match sync_bootstrap_only(client, filter, SyncOptions::default()).await {
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Ok(_) => {
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if dispatch.send(Dispatch::Synced).is_err() {
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log::warn!("profile dispatch channel closed, dropping sync result");
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}
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}
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Err(e) => log::warn!("profile sync failed: {e}"),
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}
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}
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}
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}
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