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https://github.com/neondatabase/neon.git
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## Problem Currently it's unclear how much of the `initial_tenant_load` period is in S3 objects, and therefore how impactful it is to make changes to remote operations during startup. ## Summary of changes - `Tenant::load` is refactored to load remote indices in parallel and to wait for all these remote downloads to finish before it proceeds to construct any `Timeline` objects. - `pageserver_startup_duration_seconds` gets a new `phase` value of `initial_tenant_load_remote` which counts the time from startup to when the last tenant finishes loading remote content. - `test_pageserver_restart` is extended to validate this phase. The previous version of the test was relying on order of dict entries, which stopped working when adding a phase, so this is refactored a bit. - `test_pageserver_restart` used to explicitly create a branch, now it uses the default initial_timeline. This avoids startup getting held up waiting for logical sizes, when one of the branches is not in use.
267 lines
8.3 KiB
Rust
267 lines
8.3 KiB
Rust
mod auth;
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pub mod basebackup;
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pub mod config;
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pub mod consumption_metrics;
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pub mod context;
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pub mod control_plane_client;
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pub mod deletion_queue;
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pub mod disk_usage_eviction_task;
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pub mod http;
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pub mod import_datadir;
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pub mod keyspace;
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pub mod metrics;
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pub mod page_cache;
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pub mod page_service;
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pub mod pgdatadir_mapping;
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pub mod repository;
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pub(crate) mod statvfs;
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pub mod task_mgr;
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pub mod tenant;
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pub mod trace;
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pub mod virtual_file;
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pub mod walingest;
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pub mod walrecord;
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pub mod walredo;
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pub mod failpoint_support;
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use crate::task_mgr::TaskKind;
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use camino::Utf8Path;
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use deletion_queue::DeletionQueue;
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use tracing::info;
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/// Current storage format version
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///
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/// This is embedded in the header of all the layer files.
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/// If you make any backwards-incompatible changes to the storage
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/// format, bump this!
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/// Note that TimelineMetadata uses its own version number to track
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/// backwards-compatible changes to the metadata format.
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pub const STORAGE_FORMAT_VERSION: u16 = 3;
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pub const DEFAULT_PG_VERSION: u32 = 15;
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// Magic constants used to identify different kinds of files
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pub const IMAGE_FILE_MAGIC: u16 = 0x5A60;
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pub const DELTA_FILE_MAGIC: u16 = 0x5A61;
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static ZERO_PAGE: bytes::Bytes = bytes::Bytes::from_static(&[0u8; 8192]);
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pub use crate::metrics::preinitialize_metrics;
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#[tracing::instrument(skip_all, fields(%exit_code))]
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pub async fn shutdown_pageserver(deletion_queue: Option<DeletionQueue>, exit_code: i32) {
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use std::time::Duration;
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// Shut down the libpq endpoint task. This prevents new connections from
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// being accepted.
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timed(
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task_mgr::shutdown_tasks(Some(TaskKind::LibpqEndpointListener), None, None),
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"shutdown LibpqEndpointListener",
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Duration::from_secs(1),
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)
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.await;
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// Shut down any page service tasks.
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timed(
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task_mgr::shutdown_tasks(Some(TaskKind::PageRequestHandler), None, None),
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"shutdown PageRequestHandlers",
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Duration::from_secs(1),
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)
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.await;
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// Shut down all the tenants. This flushes everything to disk and kills
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// the checkpoint and GC tasks.
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timed(
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tenant::mgr::shutdown_all_tenants(),
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"shutdown all tenants",
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Duration::from_secs(5),
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)
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.await;
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// Best effort to persist any outstanding deletions, to avoid leaking objects
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if let Some(mut deletion_queue) = deletion_queue {
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deletion_queue.shutdown(Duration::from_secs(5)).await;
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}
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// Shut down the HTTP endpoint last, so that you can still check the server's
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// status while it's shutting down.
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// FIXME: We should probably stop accepting commands like attach/detach earlier.
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timed(
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task_mgr::shutdown_tasks(Some(TaskKind::HttpEndpointListener), None, None),
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"shutdown http",
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Duration::from_secs(1),
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)
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.await;
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// There should be nothing left, but let's be sure
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timed(
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task_mgr::shutdown_tasks(None, None, None),
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"shutdown leftovers",
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Duration::from_secs(1),
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)
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.await;
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info!("Shut down successfully completed");
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std::process::exit(exit_code);
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}
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/// The name of the metadata file pageserver creates per timeline.
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/// Full path: `tenants/<tenant_id>/timelines/<timeline_id>/metadata`.
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pub const METADATA_FILE_NAME: &str = "metadata";
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/// Per-tenant configuration file.
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/// Full path: `tenants/<tenant_id>/config`.
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pub const TENANT_CONFIG_NAME: &str = "config";
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/// Per-tenant configuration file.
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/// Full path: `tenants/<tenant_id>/config`.
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pub const TENANT_LOCATION_CONFIG_NAME: &str = "config-v1";
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/// A suffix used for various temporary files. Any temporary files found in the
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/// data directory at pageserver startup can be automatically removed.
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pub const TEMP_FILE_SUFFIX: &str = "___temp";
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/// A marker file to mark that a timeline directory was not fully initialized.
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/// If a timeline directory with this marker is encountered at pageserver startup,
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/// the timeline directory and the marker file are both removed.
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/// Full path: `tenants/<tenant_id>/timelines/<timeline_id>___uninit`.
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pub const TIMELINE_UNINIT_MARK_SUFFIX: &str = "___uninit";
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pub const TIMELINE_DELETE_MARK_SUFFIX: &str = "___delete";
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/// A marker file to prevent pageserver from loading a certain tenant on restart.
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/// Different from [`TIMELINE_UNINIT_MARK_SUFFIX`] due to semantics of the corresponding
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/// `ignore` management API command, that expects the ignored tenant to be properly loaded
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/// into pageserver's memory before being ignored.
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/// Full path: `tenants/<tenant_id>/___ignored_tenant`.
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pub const IGNORED_TENANT_FILE_NAME: &str = "___ignored_tenant";
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pub fn is_temporary(path: &Utf8Path) -> bool {
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match path.file_name() {
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Some(name) => name.ends_with(TEMP_FILE_SUFFIX),
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None => false,
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}
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}
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fn ends_with_suffix(path: &Utf8Path, suffix: &str) -> bool {
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match path.file_name() {
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Some(name) => name.ends_with(suffix),
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None => false,
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}
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}
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pub fn is_uninit_mark(path: &Utf8Path) -> bool {
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ends_with_suffix(path, TIMELINE_UNINIT_MARK_SUFFIX)
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}
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pub fn is_delete_mark(path: &Utf8Path) -> bool {
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ends_with_suffix(path, TIMELINE_DELETE_MARK_SUFFIX)
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}
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fn is_walkdir_io_not_found(e: &walkdir::Error) -> bool {
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if let Some(e) = e.io_error() {
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if e.kind() == std::io::ErrorKind::NotFound {
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return true;
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}
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}
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false
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}
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/// During pageserver startup, we need to order operations not to exhaust tokio worker threads by
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/// blocking.
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///
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/// The instances of this value exist only during startup, otherwise `None` is provided, meaning no
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/// delaying is needed.
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#[derive(Clone)]
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pub struct InitializationOrder {
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/// Each initial tenant load task carries this until it is done loading timelines from remote storage
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pub initial_tenant_load_remote: Option<utils::completion::Completion>,
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/// Each initial tenant load task carries this until completion.
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pub initial_tenant_load: Option<utils::completion::Completion>,
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/// Barrier for when we can start initial logical size calculations.
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pub initial_logical_size_can_start: utils::completion::Barrier,
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/// Each timeline owns a clone of this to be consumed on the initial logical size calculation
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/// attempt. It is important to drop this once the attempt has completed.
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pub initial_logical_size_attempt: Option<utils::completion::Completion>,
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/// Barrier for when we can start any background jobs.
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///
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/// This can be broken up later on, but right now there is just one class of a background job.
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pub background_jobs_can_start: utils::completion::Barrier,
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}
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/// Time the future with a warning when it exceeds a threshold.
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async fn timed<Fut: std::future::Future>(
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fut: Fut,
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name: &str,
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warn_at: std::time::Duration,
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) -> <Fut as std::future::Future>::Output {
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let started = std::time::Instant::now();
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let mut fut = std::pin::pin!(fut);
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match tokio::time::timeout(warn_at, &mut fut).await {
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Ok(ret) => {
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tracing::info!(
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task = name,
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elapsed_ms = started.elapsed().as_millis(),
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"completed"
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);
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ret
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}
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Err(_) => {
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tracing::info!(
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task = name,
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elapsed_ms = started.elapsed().as_millis(),
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"still waiting, taking longer than expected..."
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);
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let ret = fut.await;
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// this has a global allowed_errors
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tracing::warn!(
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task = name,
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elapsed_ms = started.elapsed().as_millis(),
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"completed, took longer than expected"
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);
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ret
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}
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}
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}
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#[cfg(test)]
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mod timed_tests {
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use super::timed;
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use std::time::Duration;
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#[tokio::test]
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async fn timed_completes_when_inner_future_completes() {
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// A future that completes on time should have its result returned
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let r1 = timed(
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async move {
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tokio::time::sleep(Duration::from_millis(10)).await;
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123
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},
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"test 1",
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Duration::from_millis(50),
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)
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.await;
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assert_eq!(r1, 123);
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// A future that completes too slowly should also have its result returned
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let r1 = timed(
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async move {
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tokio::time::sleep(Duration::from_millis(50)).await;
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456
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},
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"test 1",
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Duration::from_millis(10),
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)
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.await;
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assert_eq!(r1, 456);
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}
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}
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