mod api;
mod cluster;
mod config;
mod ingest;
mod log_bus;
mod promql;
mod span_bus;
mod storage;
use std::sync::Arc;
use anyhow::{Context, Result};
use tokio::net::TcpListener;
use tonic::transport::Server as TonicServer;
use tracing_subscriber::EnvFilter;
pub use config::{ServerConfig, StorageBackend};
use log_bus::LogBus;
use span_bus::SpanBus;
use storage::{
BlobStore, DuckDbStore, FanoutStore, RemoteStore, RemoteWalSink, Store, TaelBackend, WalSink,
};
fn spawn_span_compactor(backend: Arc<TaelBackend>, blobs: Arc<BlobStore>) {
let window_hours: i64 = std::env::var("TAEL_HOT_TIER_HOURS")
.ok()
.and_then(|s| s.parse().ok())
.unwrap_or(24);
let interval_secs: u64 = std::env::var("TAEL_COMPACT_INTERVAL_SECS")
.ok()
.and_then(|s| s.parse().ok())
.unwrap_or(3600);
let retention_days: i64 = std::env::var("TAEL_TRACE_RETENTION_DAYS")
.ok()
.and_then(|s| s.parse().ok())
.unwrap_or(365);
tokio::spawn(async move {
let mut tick = tokio::time::interval(std::time::Duration::from_secs(interval_secs));
loop {
tick.tick().await;
let backend = Arc::clone(&backend);
let blobs = Arc::clone(&blobs);
let result = tokio::task::spawn_blocking(move || {
let now = chrono::Utc::now();
let hot_cutoff = now - chrono::Duration::hours(window_hours);
let mut compacted = backend.compact_spans(hot_cutoff)?;
compacted += backend.compact_logs_metrics(hot_cutoff)?;
let dropped =
backend.enforce_span_retention(now - chrono::Duration::days(retention_days))?;
let live = backend.collect_live_blob_hashes()?;
let blobs_gcd = blobs.gc(&live)?;
anyhow::Ok((compacted, dropped, blobs_gcd))
})
.await;
match result {
Ok(Ok((c, d, g))) if c > 0 || d > 0 || g > 0 => tracing::info!(
compacted = c,
partitions_dropped = d,
blobs_gcd = g,
"tael-backend maintenance"
),
Ok(Ok(_)) => {}
Ok(Err(e)) => tracing::warn!(error = %e, "maintenance failed"),
Err(e) => tracing::warn!(error = %e, "maintenance task panicked"),
}
}
});
}
pub async fn run(config: ServerConfig) -> Result<()> {
let _ = tracing_subscriber::fmt()
.with_env_filter(EnvFilter::from_default_env())
.try_init();
let blobs = Arc::new(BlobStore::new(&config.data_dir)?);
let coordinator = match &config.cluster {
Some(cs) => {
let coord = cluster::ClusterCoordinator::start(cluster::ClusterConfig {
node_id: cs.node_id.clone(),
listen_addr: cs.listen_addr.parse().context("parsing TAEL_CLUSTER_LISTEN")?,
advertise_addr: cs
.advertise_addr
.parse()
.context("parsing TAEL_CLUSTER_ADVERTISE")?,
seeds: cs.seeds.clone(),
cluster_id: cs.cluster_id.clone(),
})
.await?;
Some(coord)
}
None => None,
};
let mut search: Option<Arc<storage::SearchIndex>> = None;
let store: Arc<dyn Store> = if !config.query_shards.is_empty() {
let shards = config
.query_shards
.iter()
.map(|url| RemoteStore::new(url).map(|s| Arc::new(s) as Arc<dyn Store>))
.collect::<Result<Vec<_>>>()?;
tracing::info!(
shards = shards.len(),
"query fan-out mode: reads scatter-gather across remote shards (no local engine)"
);
Arc::new(FanoutStore::new(shards)?)
} else {
match config.storage {
StorageBackend::Duckdb => Arc::new(DuckDbStore::new(&config.data_dir)?),
StorageBackend::TaelBackend => {
let sinks: Vec<Arc<dyn WalSink>> = config
.wal_standbys
.iter()
.map(|url| {
let sink = match &coordinator {
Some(c) => RemoteWalSink::with_epoch(url, c.leader_epoch_handle()),
None => RemoteWalSink::new(url),
};
sink.map(|s| Arc::new(s) as Arc<dyn WalSink>)
})
.collect::<Result<Vec<_>>>()?;
let backend = Arc::new(if sinks.is_empty() {
TaelBackend::new(&config.data_dir)?
} else {
tracing::info!(
standbys = sinks.len(),
required_acks = ?config.wal_required_acks,
"WAL replication enabled: shipping to standbys (leader)"
);
TaelBackend::with_wal_key_and_sinks(
&config.data_dir,
"tael-backend",
sinks,
config.wal_required_acks,
)?
});
search = Some(backend.search_index());
spawn_span_compactor(Arc::clone(&backend), Arc::clone(&blobs));
backend as Arc<dyn Store>
}
}
};
let bus = Arc::new(SpanBus::new()?);
let log_bus = Arc::new(LogBus::new()?);
tracing::info!(
otlp_grpc = %config.otlp_grpc_addr,
rest_api = %config.rest_api_addr,
data_dir = %config.data_dir,
storage = ?config.storage,
"starting tael server"
);
let grpc_handle = tokio::spawn({
let store = Arc::clone(&store);
let blobs = Arc::clone(&blobs);
let bus = Arc::clone(&bus);
let log_bus = Arc::clone(&log_bus);
let addr = config.otlp_grpc_addr.parse()?;
async move {
let trace_service = ingest::otlp::OtlpTraceService::new(
Arc::clone(&store),
Arc::clone(&blobs),
search.clone(),
bus,
);
let logs_service = ingest::otlp_logs::OtlpLogsService::new(
Arc::clone(&store),
Arc::clone(&blobs),
log_bus,
);
let metrics_service =
ingest::otlp_metrics::OtlpMetricsService::new(store);
TonicServer::builder()
.add_service(
opentelemetry_proto::tonic::collector::trace::v1::trace_service_server::TraceServiceServer::new(trace_service),
)
.add_service(
opentelemetry_proto::tonic::collector::logs::v1::logs_service_server::LogsServiceServer::new(logs_service),
)
.add_service(
opentelemetry_proto::tonic::collector::metrics::v1::metrics_service_server::MetricsServiceServer::new(metrics_service),
)
.serve_with_shutdown(addr, shutdown_signal())
.await
.expect("gRPC server failed");
}
});
let rest_handle = tokio::spawn({
let store = Arc::clone(&store);
let blobs = Arc::clone(&blobs);
let bus = Arc::clone(&bus);
let log_bus = Arc::clone(&log_bus);
let cluster = coordinator.clone();
let addr = config.rest_api_addr.clone();
async move {
let app = api::rest::router(store, blobs, bus, log_bus, cluster);
let listener = TcpListener::bind(&addr).await.expect("failed to bind REST addr");
tracing::info!(%addr, "REST API listening");
axum::serve(listener, app)
.with_graceful_shutdown(shutdown_signal())
.await
.expect("REST server failed");
}
});
let (grpc_res, rest_res) = tokio::join!(grpc_handle, rest_handle);
grpc_res?;
rest_res?;
if let Err(e) = store.flush() {
tracing::warn!(error = %e, "flush on shutdown failed");
}
tracing::info!("tael server stopped");
Ok(())
}
async fn shutdown_signal() {
let ctrl_c = async {
let _ = tokio::signal::ctrl_c().await;
};
#[cfg(unix)]
let terminate = async {
match tokio::signal::unix::signal(tokio::signal::unix::SignalKind::terminate()) {
Ok(mut s) => {
s.recv().await;
}
Err(e) => {
tracing::warn!(error = %e, "failed to install SIGTERM handler");
std::future::pending::<()>().await;
}
}
};
#[cfg(not(unix))]
let terminate = std::future::pending::<()>();
tokio::select! {
_ = ctrl_c => {}
_ = terminate => {}
}
tracing::info!("shutdown signal received; draining listeners");
}