mirror of
https://github.com/LemmyNet/lemmy.git
synced 2024-11-29 07:41:20 +00:00
149 lines
5.5 KiB
Rust
149 lines
5.5 KiB
Rust
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use crate::util::get_actor_cached;
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use activitypub_federation::{
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activity_sending::SendActivityTask,
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config::Data,
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protocol::context::WithContext,
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};
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use anyhow::{Context, Result};
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use chrono::{DateTime, Utc};
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use lemmy_api_common::{context::LemmyContext, federate_retry_sleep_duration};
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use lemmy_apub::{activity_lists::SharedInboxActivities, FEDERATION_CONTEXT};
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use lemmy_db_schema::{newtypes::ActivityId, source::activity::SentActivity};
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use reqwest::Url;
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use std::ops::Deref;
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use tokio::{sync::mpsc::UnboundedSender, time::sleep};
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use tokio_util::sync::CancellationToken;
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#[derive(Debug, Eq)]
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pub(crate) struct SendSuccessInfo {
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pub activity_id: ActivityId,
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pub published: Option<DateTime<Utc>>,
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// true if the activity was skipped because the target instance is not interested in this
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// activity
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pub was_skipped: bool,
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}
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impl PartialEq for SendSuccessInfo {
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fn eq(&self, other: &Self) -> bool {
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self.activity_id == other.activity_id
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}
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}
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/// order backwards because the binary heap is a max heap, and we need the smallest element to be on
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/// top
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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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Some(self.cmp(other))
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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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/// Represents the result of sending an activity.
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///
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/// This enum is used to communicate the outcome of a send operation from a send task
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/// to the main instance worker. It's designed to maintain a clean separation between
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/// the send task and the main thread, allowing the send.rs file to be self-contained
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/// and easier to understand.
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///
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/// The use of a channel for communication (rather than shared atomic variables) was chosen
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/// because:
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/// 1. It keeps the send task cleanly separated with no direct interaction with the main thread.
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/// 2. The failure event needs to be transferred to the main task for database updates anyway.
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/// 3. The main fail_count should only be updated under certain conditions, which are best handled
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/// in the main task.
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/// 4. It maintains consistency in how data is communicated (all via channels rather than a mix of
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/// channels and atomics).
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/// 5. It simplifies concurrency management and makes the flow of data more predictable.
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pub(crate) enum SendActivityResult {
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Success(SendSuccessInfo),
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Failure { fail_count: i32 },
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}
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/// Represents a task for retrying to send an activity.
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///
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/// This struct encapsulates all the necessary information and resources for attempting
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/// to send an activity to multiple inbox URLs, with built-in retry logic.
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pub(crate) struct SendRetryTask<'a> {
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pub activity: &'a SentActivity,
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pub object: &'a SharedInboxActivities,
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/// Must not be empty at this point
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pub inbox_urls: Vec<Url>,
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/// Channel to report results back to the main instance worker
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pub report: &'a mut UnboundedSender<SendActivityResult>,
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/// The first request will be sent immediately, but subsequent requests will be delayed
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/// according to the number of previous fails + 1
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///
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/// This is a read-only immutable variable that is passed only one way, from the main
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/// thread to each send task. It allows the task to determine how long to sleep initially
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/// if the request fails.
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pub initial_fail_count: i32,
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/// For logging purposes
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pub domain: String,
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pub context: Data<LemmyContext>,
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pub stop: CancellationToken,
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}
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impl<'a> SendRetryTask<'a> {
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// this function will return successfully when (a) send succeeded or (b) worker cancelled
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// and will return an error if an internal error occurred (send errors cause an infinite loop)
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pub async fn send_retry_loop(self) -> Result<()> {
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let SendRetryTask {
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activity,
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object,
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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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context,
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stop,
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} = self;
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debug_assert!(!inbox_urls.is_empty());
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let pool = &mut context.pool();
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let Some(actor_apub_id) = &activity.actor_apub_id else {
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return Err(anyhow::anyhow!("activity is from before lemmy 0.19"));
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};
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let actor = get_actor_cached(pool, activity.actor_type, actor_apub_id)
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.await
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.context("failed getting actor instance (was it marked deleted / removed?)")?;
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let object = WithContext::new(object.clone(), FEDERATION_CONTEXT.deref().clone());
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let requests = SendActivityTask::prepare(&object, actor.as_ref(), inbox_urls, &context).await?;
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for task in requests {
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// usually only one due to shared inbox
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tracing::debug!("sending out {}", task);
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let mut fail_count = initial_fail_count;
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while let Err(e) = task.sign_and_send(&context).await {
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fail_count += 1;
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report.send(SendActivityResult::Failure {
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fail_count,
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// activity_id: activity.id,
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})?;
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let retry_delay = federate_retry_sleep_duration(fail_count);
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tracing::info!(
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"{}: retrying {:?} attempt {} with delay {retry_delay:.2?}. ({e})",
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domain,
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activity.id,
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fail_count
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);
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tokio::select! {
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() = sleep(retry_delay) => {},
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() = stop.cancelled() => {
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// cancel sending without reporting any result.
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// the InstanceWorker needs to be careful to not hang on receive of that
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// channel when cancelled (see handle_send_results)
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return Ok(());
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}
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}
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}
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}
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report.send(SendActivityResult::Success(SendSuccessInfo {
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activity_id: activity.id,
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published: Some(activity.published),
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was_skipped: false,
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}))?;
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Ok(())
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}
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}
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