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federation: parallel sending
This commit is contained in:
parent
3a0c1dca90
commit
539f06af97
4
Cargo.lock
generated
4
Cargo.lock
generated
@ -5439,9 +5439,9 @@ checksum = "1f3ccbac311fea05f86f61904b462b55fb3df8837a366dfc601a0161d0532f20"
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[[package]]
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name = "tokio"
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version = "1.36.0"
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version = "1.37.0"
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source = "registry+https://github.com/rust-lang/crates.io-index"
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checksum = "61285f6515fa018fb2d1e46eb21223fff441ee8db5d0f1435e8ab4f5cdb80931"
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checksum = "1adbebffeca75fcfd058afa480fb6c0b81e165a0323f9c9d39c9697e37c46787"
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dependencies = [
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"backtrace",
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"bytes",
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@ -139,7 +139,7 @@ anyhow = { version = "1.0.81", features = [
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diesel_ltree = "0.3.1"
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typed-builder = "0.18.1"
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serial_test = "2.0.0"
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tokio = { version = "1.36.0", features = ["full"] }
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tokio = { version = "1.37.0", features = ["full"] }
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regex = "1.10.3"
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once_cell = "1.19.0"
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diesel-derive-newtype = "2.1.0"
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@ -73,19 +73,16 @@ async fn start_stop_federation_workers(
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// create new worker
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let config = federation_config.clone();
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let stats_sender = stats_sender.clone();
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let pool = pool.clone();
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workers.insert(
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instance.id,
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CancellableTask::spawn(WORKER_EXIT_TIMEOUT, move |stop| {
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let instance = instance.clone();
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let req_data = config.clone().to_request_data();
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let config = config.clone();
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let stats_sender = stats_sender.clone();
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let pool = pool.clone();
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async move {
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InstanceWorker::init_and_loop(
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instance,
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req_data,
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&mut DbPool::Pool(&pool),
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config,
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stop,
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stats_sender,
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)
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@ -7,7 +7,7 @@ use crate::util::{
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};
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use activitypub_federation::{
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activity_sending::SendActivityTask,
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config::Data,
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config::{Data, FederationConfig},
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protocol::context::WithContext,
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};
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use anyhow::{Context, Result};
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@ -22,22 +22,22 @@ use lemmy_db_schema::{
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instance::{Instance, InstanceForm},
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site::Site,
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},
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utils::{naive_now, DbPool},
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utils::{naive_now, ActualDbPool, DbPool},
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};
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use lemmy_db_views_actor::structs::CommunityFollowerView;
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use once_cell::sync::Lazy;
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use reqwest::Url;
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use std::{
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collections::{HashMap, HashSet},
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collections::{BinaryHeap, HashMap, HashSet},
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ops::{Add, Deref},
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time::Duration,
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};
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use tokio::{sync::mpsc::UnboundedSender, time::sleep};
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use tokio::{
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sync::mpsc::{self, UnboundedSender},
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time::sleep,
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};
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use tokio_util::sync::CancellationToken;
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/// Check whether to save state to db every n sends if there's no failures (during failures state is saved after every attempt)
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/// This determines the batch size for loop_batch. After a batch ends and SAVE_STATE_EVERY_TIME has passed, the federation_queue_state is updated in the DB.
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static CHECK_SAVE_STATE_EVERY_IT: i64 = 100;
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/// Save state to db after this time has passed since the last state (so if the server crashes or is SIGKILLed, less than X seconds of activities are resent)
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static SAVE_STATE_EVERY_TIME: Duration = Duration::from_secs(60);
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/// interval with which new additions to community_followers are queried.
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@ -57,6 +57,16 @@ static FOLLOW_ADDITIONS_RECHECK_DELAY: Lazy<chrono::TimeDelta> = Lazy::new(|| {
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/// This is expected to happen pretty rarely and updating it in a timely manner is not too important.
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static FOLLOW_REMOVALS_RECHECK_DELAY: Lazy<chrono::TimeDelta> =
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Lazy::new(|| chrono::TimeDelta::try_hours(1).expect("TimeDelta out of bounds"));
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static CONCURRENT_SENDS: Lazy<i64> = Lazy::new(|| {
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std::env::var("LEMMY_FEDERATION_CONCURRENT_SENDS_PER_INSTANCE")
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.ok()
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.and_then(|s| s.parse().ok())
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.unwrap_or(8)
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});
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/// Maximum number of successful sends to allow out of order
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const MAX_SUCCESSFULS: usize = 1000;
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pub(crate) struct InstanceWorker {
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instance: Instance,
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// load site lazily because if an instance is first seen due to being on allowlist,
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@ -67,60 +77,116 @@ pub(crate) struct InstanceWorker {
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site: Option<Site>,
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followed_communities: HashMap<CommunityId, HashSet<Url>>,
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stop: CancellationToken,
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context: Data<LemmyContext>,
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config: FederationConfig<LemmyContext>,
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stats_sender: UnboundedSender<(String, FederationQueueState)>,
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last_full_communities_fetch: DateTime<Utc>,
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last_incremental_communities_fetch: DateTime<Utc>,
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state: FederationQueueState,
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last_state_insert: DateTime<Utc>,
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pool: ActualDbPool,
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}
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#[derive(Debug, PartialEq, Eq)]
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struct SendSuccessInfo {
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activity_id: ActivityId,
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published: Option<DateTime<Utc>>,
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was_skipped: bool,
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}
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impl PartialOrd for SendSuccessInfo {
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fn partial_cmp(&self, other: &Self) -> Option<std::cmp::Ordering> {
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other.activity_id.partial_cmp(&self.activity_id)
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}
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}
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impl Ord for SendSuccessInfo {
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fn cmp(&self, other: &Self) -> std::cmp::Ordering {
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other.activity_id.cmp(&self.activity_id)
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}
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}
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enum SendActivityResult {
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Success(SendSuccessInfo),
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Failure {
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fail_count: i32,
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// activity_id: ActivityId,
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},
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}
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impl InstanceWorker {
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pub(crate) async fn init_and_loop(
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instance: Instance,
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context: Data<LemmyContext>,
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pool: &mut DbPool<'_>, // in theory there's a ref to the pool in context, but i couldn't get that to work wrt lifetimes
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config: FederationConfig<LemmyContext>,
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// pool: ActualDbPool, // in theory there's a ref to the pool in context, but i couldn't get that to work wrt lifetimes
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stop: CancellationToken,
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stats_sender: UnboundedSender<(String, FederationQueueState)>,
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) -> Result<(), anyhow::Error> {
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let state = FederationQueueState::load(pool, instance.id).await?;
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let state =
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FederationQueueState::load(&mut config.to_request_data().pool(), instance.id).await?;
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let pool = config.to_request_data().inner_pool().clone();
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let mut worker = InstanceWorker {
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instance,
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site_loaded: false,
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site: None,
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followed_communities: HashMap::new(),
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stop,
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context,
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config,
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stats_sender,
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last_full_communities_fetch: Utc.timestamp_nanos(0),
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last_incremental_communities_fetch: Utc.timestamp_nanos(0),
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state,
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last_state_insert: Utc.timestamp_nanos(0),
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pool,
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};
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worker.loop_until_stopped(pool).await
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worker.loop_until_stopped().await
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}
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/// loop fetch new activities from db and send them to the inboxes of the given instances
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/// this worker only returns if (a) there is an internal error or (b) the cancellation token is cancelled (graceful exit)
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pub(crate) async fn loop_until_stopped(
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&mut self,
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pool: &mut DbPool<'_>,
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) -> Result<(), anyhow::Error> {
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let save_state_every = chrono::Duration::from_std(SAVE_STATE_EVERY_TIME).expect("not negative");
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self.update_communities(pool).await?;
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async fn loop_until_stopped(&mut self) -> Result<()> {
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self.initial_fail_sleep().await?;
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let mut latest_id = self.get_latest_id().await?;
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// activities that have been successfully sent but
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// that are not the lowest number and thus can't be written to the database yet
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let mut successfuls = BinaryHeap::<SendSuccessInfo>::new();
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let mut in_flight: i64 = 0;
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let (report_inbox_result, mut receive_inbox_result) =
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tokio::sync::mpsc::unbounded_channel::<SendActivityResult>();
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while !self.stop.is_cancelled() {
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self.loop_batch(pool).await?;
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if self.stop.is_cancelled() {
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break;
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// check if we need to wait for a send to finish before sending the next one
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let need_wait_for_event = (in_flight != 0 && self.state.fail_count > 0)
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|| successfuls.len() > MAX_SUCCESSFULS
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|| in_flight >= *CONCURRENT_SENDS;
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if need_wait_for_event || receive_inbox_result.len() > 4 {
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self
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.handle_send_results(&mut receive_inbox_result, &mut successfuls, &mut in_flight)
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.await?;
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} else {
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self.update_communities().await?;
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let last_successful_id = self
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.state
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.last_successful_id
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.map(|e| e.0)
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.expect("set above");
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let next_id = ActivityId(last_successful_id + (successfuls.len() as i64) + in_flight + 1);
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if next_id > latest_id {
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latest_id = self.get_latest_id().await?;
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if next_id > latest_id {
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// no more work to be done, wait before rechecking
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tokio::select! {
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() = sleep(*WORK_FINISHED_RECHECK_DELAY) => {},
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() = self.stop.cancelled() => {}
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}
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continue;
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}
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}
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in_flight += 1;
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self
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.spawn_send_if_needed(next_id, report_inbox_result.clone())
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.await?;
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}
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if (Utc::now() - self.last_state_insert) > save_state_every {
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self.save_and_send_state(pool).await?;
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}
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self.update_communities(pool).await?;
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}
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// final update of state in db
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self.save_and_send_state(pool).await?;
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// final update of state in db on shutdown
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self.save_and_send_state().await?;
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Ok(())
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}
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@ -137,6 +203,11 @@ impl InstanceWorker {
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return Ok(());
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}
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let remaining = required - elapsed;
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tracing::debug!(
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"{}: fail-sleeping for {:?} before starting queue",
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self.instance.domain,
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remaining
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);
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tokio::select! {
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() = sleep(remaining) => {},
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() = self.stop.cancelled() => {}
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@ -144,78 +215,174 @@ impl InstanceWorker {
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}
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Ok(())
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}
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/// send out a batch of CHECK_SAVE_STATE_EVERY_IT activities
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async fn loop_batch(&mut self, pool: &mut DbPool<'_>) -> Result<()> {
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let latest_id = get_latest_activity_id(pool).await?;
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let mut id = if let Some(id) = self.state.last_successful_id {
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id
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} else {
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/// get newest activity id and set it as last_successful_id if it's the first time this instance is seen
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async fn get_latest_id(&mut self) -> Result<ActivityId> {
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let latest_id = get_latest_activity_id(&mut self.pool()).await?;
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if let None = self.state.last_successful_id {
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// this is the initial creation (instance first seen) of the federation queue for this instance
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// skip all past activities:
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self.state.last_successful_id = Some(latest_id);
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// save here to ensure it's not read as 0 again later if no activities have happened
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self.save_and_send_state(pool).await?;
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latest_id
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};
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if id >= latest_id {
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// no more work to be done, wait before rechecking
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tokio::select! {
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() = sleep(*WORK_FINISHED_RECHECK_DELAY) => {},
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() = self.stop.cancelled() => {}
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self.save_and_send_state().await?;
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}
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Ok(latest_id)
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}
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async fn handle_send_results(
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&mut self,
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receive_inbox_result: &mut mpsc::UnboundedReceiver<SendActivityResult>,
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successfuls: &mut BinaryHeap<SendSuccessInfo>,
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in_flight: &mut i64,
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) -> Result<(), anyhow::Error> {
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let force_write = false;
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let mut events = Vec::new();
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// wait for at least one event but if there's multiple handle them all
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receive_inbox_result.recv_many(&mut events, 1000).await;
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for event in events {
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match event {
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SendActivityResult::Success(s) => {
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self.state.fail_count = 0;
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*in_flight -= 1;
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if !s.was_skipped {
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self.mark_instance_alive().await?;
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}
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successfuls.push(s);
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}
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SendActivityResult::Failure { fail_count, .. } => {
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if fail_count > self.state.fail_count {
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// override fail count - if multiple activities are currently sending this value may get conflicting info but that's fine
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self.state.fail_count = fail_count;
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self.state.last_retry = Some(Utc::now());
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}
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}
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}
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}
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self
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.pop_successfuls_and_write(successfuls, force_write)
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.await?;
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Ok(())
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}
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async fn mark_instance_alive(&mut self) -> Result<()> {
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// Activity send successful, mark instance as alive if it hasn't been updated in a while.
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let updated = self.instance.updated.unwrap_or(self.instance.published);
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if updated.add(Days::new(1)) < Utc::now() {
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self.instance.updated = Some(Utc::now());
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let form = InstanceForm::builder()
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.domain(self.instance.domain.clone())
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.updated(Some(naive_now()))
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.build();
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Instance::update(&mut self.pool(), self.instance.id, form).await?;
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}
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Ok(())
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}
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/// checks whether the highest successful id can be updated and writes to db if so
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async fn pop_successfuls_and_write(
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&mut self,
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successfuls: &mut BinaryHeap<SendSuccessInfo>,
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force_write: bool,
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) -> Result<()> {
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let Some(mut last_id) = self.state.last_successful_id else {
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tracing::warn!("should be impossible: last successful id is None");
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return Ok(());
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};
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tracing::debug!(
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"last: {:?}, next: {:?}, currently in successfuls: {:?}",
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last_id,
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successfuls.peek(),
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successfuls.iter()
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);
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while successfuls
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.peek()
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.map(|a| &a.activity_id == &ActivityId(last_id.0 + 1))
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.unwrap_or(false)
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{
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let next = successfuls.pop().unwrap();
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last_id = next.activity_id;
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self.state.last_successful_id = Some(next.activity_id);
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self.state.last_successful_published_time = next.published;
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}
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let save_state_every = chrono::Duration::from_std(SAVE_STATE_EVERY_TIME).expect("not negative");
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if force_write || (Utc::now() - self.last_state_insert) > save_state_every {
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self.save_and_send_state().await?;
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}
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Ok(())
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}
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async fn spawn_send_if_needed(
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&mut self,
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activity_id: ActivityId,
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report: UnboundedSender<SendActivityResult>,
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) -> Result<()> {
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let Some(ele) = get_activity_cached(&mut self.pool(), activity_id)
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.await
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.context("failed reading activity from db")?
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else {
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tracing::debug!("{}: {:?} does not exist", self.instance.domain, activity_id);
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report.send(SendActivityResult::Success(SendSuccessInfo {
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activity_id,
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published: None,
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was_skipped: true,
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}))?;
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return Ok(());
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};
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let activity = &ele.0;
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let inbox_urls = self
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.get_inbox_urls(activity)
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.await
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.context("failed figuring out inbox urls")?;
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if inbox_urls.is_empty() {
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tracing::debug!("{}: {:?} no inboxes", self.instance.domain, activity.id);
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report.send(SendActivityResult::Success(SendSuccessInfo {
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activity_id,
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published: Some(activity.published),
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was_skipped: true,
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}))?;
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return Ok(());
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}
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let mut processed_activities = 0;
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while id < latest_id
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&& processed_activities < CHECK_SAVE_STATE_EVERY_IT
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&& !self.stop.is_cancelled()
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{
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id = ActivityId(id.0 + 1);
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processed_activities += 1;
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let Some(ele) = get_activity_cached(pool, id)
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.await
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.context("failed reading activity from db")?
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else {
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tracing::debug!("{}: {:?} does not exist", self.instance.domain, id);
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self.state.last_successful_id = Some(id);
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continue;
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};
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if let Err(e) = self.send_retry_loop(pool, &ele.0, &ele.1).await {
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let inbox_urls = inbox_urls.into_iter().collect();
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let initial_fail_count = self.state.fail_count;
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let data = self.config.to_request_data();
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let stop = self.stop.clone();
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let domain = self.instance.domain.clone();
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tokio::spawn(async move {
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if let Err(e) = InstanceWorker::send_retry_loop(
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&ele.0,
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&ele.1,
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inbox_urls,
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report,
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initial_fail_count,
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domain,
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data,
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stop,
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)
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.await
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{
|
||||
tracing::warn!(
|
||||
"sending {} errored internally, skipping activity: {:?}",
|
||||
ele.0.ap_id,
|
||||
e
|
||||
);
|
||||
}
|
||||
if self.stop.is_cancelled() {
|
||||
return Ok(());
|
||||
}
|
||||
// send success!
|
||||
self.state.last_successful_id = Some(id);
|
||||
self.state.last_successful_published_time = Some(ele.0.published);
|
||||
self.state.fail_count = 0;
|
||||
}
|
||||
});
|
||||
Ok(())
|
||||
}
|
||||
|
||||
// this function will return successfully when (a) send succeeded or (b) worker cancelled
|
||||
// and will return an error if an internal error occurred (send errors cause an infinite loop)
|
||||
async fn send_retry_loop(
|
||||
&mut self,
|
||||
pool: &mut DbPool<'_>,
|
||||
activity: &SentActivity,
|
||||
object: &SharedInboxActivities,
|
||||
inbox_urls: Vec<Url>,
|
||||
report: UnboundedSender<SendActivityResult>,
|
||||
initial_fail_count: i32,
|
||||
domain: String,
|
||||
context: Data<LemmyContext>,
|
||||
stop: CancellationToken,
|
||||
) -> Result<()> {
|
||||
let inbox_urls = self
|
||||
.get_inbox_urls(pool, activity)
|
||||
.await
|
||||
.context("failed figuring out inbox urls")?;
|
||||
if inbox_urls.is_empty() {
|
||||
tracing::debug!("{}: {:?} no inboxes", self.instance.domain, activity.id);
|
||||
self.state.last_successful_id = Some(activity.id);
|
||||
self.state.last_successful_published_time = Some(activity.published);
|
||||
return Ok(());
|
||||
}
|
||||
let pool = &mut context.pool();
|
||||
let Some(actor_apub_id) = &activity.actor_apub_id else {
|
||||
return Ok(()); // activity was inserted before persistent queue was activated
|
||||
};
|
||||
@ -224,61 +391,50 @@ impl InstanceWorker {
|
||||
.context("failed getting actor instance (was it marked deleted / removed?)")?;
|
||||
|
||||
let object = WithContext::new(object.clone(), FEDERATION_CONTEXT.deref().clone());
|
||||
let inbox_urls = inbox_urls.into_iter().collect();
|
||||
let requests =
|
||||
SendActivityTask::prepare(&object, actor.as_ref(), inbox_urls, &self.context).await?;
|
||||
let requests = SendActivityTask::prepare(&object, actor.as_ref(), inbox_urls, &context).await?;
|
||||
for task in requests {
|
||||
// usually only one due to shared inbox
|
||||
tracing::debug!("sending out {}", task);
|
||||
while let Err(e) = task.sign_and_send(&self.context).await {
|
||||
self.state.fail_count += 1;
|
||||
self.state.last_retry = Some(Utc::now());
|
||||
let retry_delay: Duration = federate_retry_sleep_duration(self.state.fail_count);
|
||||
let mut fail_count = initial_fail_count;
|
||||
while let Err(e) = task.sign_and_send(&context).await {
|
||||
fail_count += 1;
|
||||
report.send(SendActivityResult::Failure {
|
||||
fail_count,
|
||||
// activity_id: activity.id,
|
||||
})?;
|
||||
let retry_delay: Duration = federate_retry_sleep_duration(fail_count);
|
||||
tracing::info!(
|
||||
"{}: retrying {:?} attempt {} with delay {retry_delay:.2?}. ({e})",
|
||||
self.instance.domain,
|
||||
domain,
|
||||
activity.id,
|
||||
self.state.fail_count
|
||||
fail_count
|
||||
);
|
||||
self.save_and_send_state(pool).await?;
|
||||
tokio::select! {
|
||||
() = sleep(retry_delay) => {},
|
||||
() = self.stop.cancelled() => {
|
||||
() = stop.cancelled() => {
|
||||
// save state to db and exit
|
||||
return Ok(());
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Activity send successful, mark instance as alive if it hasn't been updated in a while.
|
||||
let updated = self.instance.updated.unwrap_or(self.instance.published);
|
||||
if updated.add(Days::new(1)) < Utc::now() {
|
||||
self.instance.updated = Some(Utc::now());
|
||||
|
||||
let form = InstanceForm::builder()
|
||||
.domain(self.instance.domain.clone())
|
||||
.updated(Some(naive_now()))
|
||||
.build();
|
||||
Instance::update(pool, self.instance.id, form).await?;
|
||||
}
|
||||
}
|
||||
report.send(SendActivityResult::Success(SendSuccessInfo {
|
||||
activity_id: activity.id,
|
||||
published: Some(activity.published),
|
||||
was_skipped: false,
|
||||
}))?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// get inbox urls of sending the given activity to the given instance
|
||||
/// most often this will return 0 values (if instance doesn't care about the activity)
|
||||
/// or 1 value (the shared inbox)
|
||||
/// > 1 values only happens for non-lemmy software
|
||||
async fn get_inbox_urls(
|
||||
&mut self,
|
||||
pool: &mut DbPool<'_>,
|
||||
activity: &SentActivity,
|
||||
) -> Result<HashSet<Url>> {
|
||||
async fn get_inbox_urls(&mut self, activity: &SentActivity) -> Result<HashSet<Url>> {
|
||||
let mut inbox_urls: HashSet<Url> = HashSet::new();
|
||||
|
||||
if activity.send_all_instances {
|
||||
if !self.site_loaded {
|
||||
self.site = Site::read_from_instance_id(pool, self.instance.id).await?;
|
||||
self.site = Site::read_from_instance_id(&mut self.pool(), self.instance.id).await?;
|
||||
self.site_loaded = true;
|
||||
}
|
||||
if let Some(site) = &self.site {
|
||||
@ -302,23 +458,30 @@ impl InstanceWorker {
|
||||
Ok(inbox_urls)
|
||||
}
|
||||
|
||||
async fn update_communities(&mut self, pool: &mut DbPool<'_>) -> Result<()> {
|
||||
async fn update_communities(&mut self) -> Result<()> {
|
||||
if (Utc::now() - self.last_full_communities_fetch) > *FOLLOW_REMOVALS_RECHECK_DELAY {
|
||||
tracing::debug!(
|
||||
"{}: fetching full list of communities",
|
||||
self.instance.domain
|
||||
);
|
||||
// process removals every hour
|
||||
(self.followed_communities, self.last_full_communities_fetch) = self
|
||||
.get_communities(pool, self.instance.id, Utc.timestamp_nanos(0))
|
||||
.get_communities(self.instance.id, Utc.timestamp_nanos(0))
|
||||
.await?;
|
||||
self.last_incremental_communities_fetch = self.last_full_communities_fetch;
|
||||
}
|
||||
if (Utc::now() - self.last_incremental_communities_fetch) > *FOLLOW_ADDITIONS_RECHECK_DELAY {
|
||||
// process additions every minute
|
||||
let (news, time) = self
|
||||
.get_communities(
|
||||
pool,
|
||||
self.instance.id,
|
||||
self.last_incremental_communities_fetch,
|
||||
)
|
||||
.get_communities(self.instance.id, self.last_incremental_communities_fetch)
|
||||
.await?;
|
||||
if !news.is_empty() {
|
||||
tracing::debug!(
|
||||
"{}: fetched {} incremental new followed communities",
|
||||
self.instance.domain,
|
||||
news.len()
|
||||
);
|
||||
}
|
||||
self.followed_communities.extend(news);
|
||||
self.last_incremental_communities_fetch = time;
|
||||
}
|
||||
@ -328,29 +491,38 @@ impl InstanceWorker {
|
||||
/// get a list of local communities with the remote inboxes on the given instance that cares about them
|
||||
async fn get_communities(
|
||||
&mut self,
|
||||
pool: &mut DbPool<'_>,
|
||||
instance_id: InstanceId,
|
||||
last_fetch: DateTime<Utc>,
|
||||
) -> Result<(HashMap<CommunityId, HashSet<Url>>, DateTime<Utc>)> {
|
||||
let new_last_fetch =
|
||||
Utc::now() - chrono::TimeDelta::try_seconds(10).expect("TimeDelta out of bounds"); // update to time before fetch to ensure overlap. subtract 10s to ensure overlap even if published date is not exact
|
||||
Ok((
|
||||
CommunityFollowerView::get_instance_followed_community_inboxes(pool, instance_id, last_fetch)
|
||||
.await?
|
||||
.into_iter()
|
||||
.fold(HashMap::new(), |mut map, (c, u)| {
|
||||
map.entry(c).or_default().insert(u.into());
|
||||
map
|
||||
}),
|
||||
CommunityFollowerView::get_instance_followed_community_inboxes(
|
||||
&mut self.pool(),
|
||||
instance_id,
|
||||
last_fetch,
|
||||
)
|
||||
.await?
|
||||
.into_iter()
|
||||
.fold(HashMap::new(), |mut map, (c, u)| {
|
||||
map.entry(c).or_default().insert(u.into());
|
||||
map
|
||||
}),
|
||||
new_last_fetch,
|
||||
))
|
||||
}
|
||||
async fn save_and_send_state(&mut self, pool: &mut DbPool<'_>) -> Result<()> {
|
||||
async fn save_and_send_state(&mut self) -> Result<()> {
|
||||
tracing::debug!("{}: saving and sending state", self.instance.domain);
|
||||
self.last_state_insert = Utc::now();
|
||||
FederationQueueState::upsert(pool, &self.state).await?;
|
||||
FederationQueueState::upsert(&mut self.pool(), &self.state).await?;
|
||||
self
|
||||
.stats_sender
|
||||
.send((self.instance.domain.clone(), self.state.clone()))?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
fn pool(&self) -> DbPool<'_> {
|
||||
//self.config.to_request_data()
|
||||
DbPool::Pool(&self.pool)
|
||||
}
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user