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## Observability
### Metrics
The service exposes Prometheus metrics via the monitoring HTTP server (default `:2112` ):
- `caatsm_messages_total{stream,consumer,result}`
Total number of messages handled by the receiver, labelled by stream/consumer and result (`ok` , `fail` , `permanent_fail` , `retry` ).
- `caatsm_handle_latency_seconds{stream,consumer}`
End-to-end handling latency from NATS receive to handler completion.
- `caatsm_retries_total{stream,consumer,reason}`
Number of retries (NAKs) issued by the consumer, labelled by reason (e.g. `processor_error` ).
- `caatsm_js_api_calls_total{operation}`
JetStream API calls performed by the service.
- `caatsm_db_queries_total{operation,result}`
Database operations grouped by operation (`insert_one` , `insert_batch` , `insert_raw` ) and result (`ok` , `error` ).
- `caatsm_db_query_latency_seconds{operation}`
DB operation latency.
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- `caatsm_dlq_messages_total{stream,consumer}`
Count of messages successfully routed to the DLQ.
- `caatsm_dlq_publish_failures_total{stream,consumer}`
Count of failures when attempting to publish messages to the DLQ.
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- `caatsm_nats_consumer_pending_messages{stream,consumer}`
Current pending message count for each JetStream consumer (useful for lag/backlog alerts).
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Additional OTEL metrics are emitted via the configured OTEL endpoint, including:
- `caatsm_messages_processed_total`
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- `caatsm_parse_duration_seconds`
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- `caatsm_publish_failures_total`
- `caatsm_nats_consumer_ack_pending`
- `caatsm_nats_consumer_redelivered`
- `caatsm_nats_consumer_pending`
- `caatsm_nats_consumer_delivered`
These metrics are intended to be scraped by Prometheus (either directly or via the OTEL collector) and visualised in Grafana dashboards. Recommended dashboard panels include:
- Per-stream/consumer message rate and error rate.
- Handling latency P50/P95/P99.
- NATS consumer backlog and redelivery counts.
- DB query rates and latencies.
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#### Prometheus scrape configuration
In the local dev environment, metrics are typically scraped by the Prometheus
container defined in `docker-compose.dev.yml` using `configs/prometheus.dev.yml` .
A recommended scrape configuration for the receiver is:
```yaml
scrape_configs :
- job_name : "otel-collector"
static_configs :
- targets :
- "otel-collector:8888"
- job_name : "nats-exporter"
static_configs :
- targets :
- "nats-exporter:7777"
- job_name : "caatsm-receiver"
static_configs :
- targets :
# go-caatsm running on host/WSL, Prometheus in Docker
- "host.docker.internal:2112"
```
When you run the receiver directly on the host/WSL, ensure the monitoring
server listens on all interfaces so that Docker can reach it, for example via:
```bash
export CAATSM_MONITORING_ADDR = 0.0.0.0:2112
export CAATSM_MONITORING_ENABLE_METRICS = true
export CAATSM_MONITORING_ENABLE_HEALTH = true
```
Alternative topologies:
- **Receiver and Prometheus in the same Docker network**
Expose the monitoring server via a container port and use the container
name as the scrape target, e.g. `caatsm-receiver:2112` .
- **Receiver behind a reverse proxy / load balancer**
Point Prometheus at the proxy address and path that forwards to `/metrics` .
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#### CAATSM – Receiver Overview Dashboard
The `caatsm-overview` Grafana dashboard (provisioned from `configs/grafana-dashboards.dev/caatsm-overview.json` ) focuses on the CAATSM receiver service and surfaces:
- **Message throughput by result** – derived from `caatsm_messages_total{result}` .
- **Per stream/consumer rates** – `caatsm_messages_total{stream,consumer}` .
- **End-to-end handle latency** – P50/P95/P99 from `caatsm_handle_latency_seconds_bucket` .
- **DB query rate and latency** – from `caatsm_db_queries_total` and `caatsm_db_query_latency_seconds_bucket` .
- **Retry and permanent failure rates** – from `caatsm_retries_total` and `caatsm_messages_total{result="permanent_fail"}` .
- **Publish failures** – from `caatsm_publish_failures_total` .
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To validate that the dashboard is receiving data:
1. Check the monitoring endpoint directly:
```bash
curl -s http://localhost:2112/metrics | grep caatsm_messages_total || true
` ``
2. In Prometheus (` http://localhost:9090`), run:
` ``text
caatsm_messages_total
` ``
and
` ``text
rate(caatsm_messages_total[5m])
` ``
3. In Grafana, open the **CAATSM – Receiver Overview** dashboard and
verify that:
- “Messages by result (5m rate)” shows time series for ` ok`, ` fail`,
and ` permanent_fail`.
- “Messages per stream/consumer” shows series labelled by ` stream`
and ` consumer`.
- DB-related panels show non-zero values based on
` caatsm_db_queries_total` and ` caatsm_db_query_latency_seconds`.
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### Health and Readiness
The monitoring server exposes:
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- ` /livez` – lightweight liveness endpoint that reports process/build information without checking dependencies.
- ` /healthz` – backward-compatible health endpoint used by existing deploys; currently shares logic with ` /readyz`.
- ` /readyz` – readiness endpoint that checks critical dependencies and should be used by load balancers / orchestrators.
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Checks performed:
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- PostgreSQL: ` pgxpool.Pool.Ping` with configurable timeout (` monitoring.health_timeout`), reporting ` status` and ` latency_ms`.
- NATS: connection status must be ` CONNECTED`; otherwise the dependency is marked as unavailable.
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Responses include build metadata and a dependency map, for example:
` ``json
{
"status": "ok",
"build": {
"version": "v0.4.3",
"rev": "abc1234",
"built_at": "2025-11-16T08:35:00Z"
},
"dependencies": {
"postgres": {"status": "ok", "latency_ms": 4},
"nats": {"status": "CONNECTED"}
}
}
` ``
A non-2xx response indicates the service is not healthy/ready and should be removed from traffic.
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### Tracing
Tracing is configured via the ` telemetry` section:
- ` telemetry.enabled` – enables OTEL exporters.
- ` telemetry.endpoint` – OTLP HTTP endpoint (e.g. ` localhost:4318`).
- ` telemetry.insecure` – disables TLS for local/dev.
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#### OTEL vs Prometheus metrics
The receiver reports two complementary sets of metrics:
- **Prometheus metrics via ` /metrics`**
Implemented in ` internal/observability/metrics`, covering:
- End-to-end message handling (` caatsm_messages_total`,
` caatsm_handle_latency_seconds`, ` caatsm_retries_total`)
- DB activity (` caatsm_db_queries_total`,
` caatsm_db_query_latency_seconds`)
- Legacy per-telegram metrics
- **OpenTelemetry metrics via OTLP**
Implemented using ` otel.Meter` in the NATS consumer and app processor,
including:
- ` caatsm_messages_processed_total`
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- ` caatsm_parse_duration_seconds`
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- ` caatsm_publish_failures_total`
- ` caatsm_nats_consumer_ack_pending`
- ` caatsm_nats_consumer_redelivered`
- ` caatsm_nats_consumer_pending`
- ` caatsm_nats_consumer_delivered`
Prometheus only sees the metrics exposed on ` /metrics`. OTEL metrics are
exported to the configured OTEL collector (` telemetry.endpoint`) via OTLP and
are, by default, forwarded to Jaeger (traces) and logs (metrics) according to
` configs/otel-collector.dev.yaml`. If you want OTEL metrics to appear in
Prometheus as well, you can extend the collector configuration with a
` prometheus` or ` prometheusremotewrite` exporter and add a corresponding
scrape or remote-write configuration.
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Key spans:
- ` caatsm/nats`
- ` Consumer.processMessage`
- ` caatsm/app`
- ` MessageProcessor.Handle`
- ` Publisher.Publish`
- ` caatsm/postgres`
- ` Repository.InsertOne`
- ` Repository.InsertBatch`
- ` Repository.InsertRaw`
Important attributes:
- ` nats.subject`, ` nats.msg_id`, ` nats.js.stream_seq`, ` nats.js.consumer_seq`
- ` telegram.message_id`, ` telegram.category`, ` telegram.status`
- ` db.table`, ` db.inserted`
### Structured Logging Contract
Logging is done with Zap. The ` internal/observability/logging` package standardises fields via ` MessageFields`:
- ` service` – logical component (` caatsm-consumer`, ` caatsm-processor` etc.).
- ` transport_msg_id` – NATS/envelope message ID (derived from ` Nats-Msg-Id` or JetStream sequence).
- ` telegram_message_id` – business telegram message ID from the payload.
- ` category` – telegram category (ARR, DEP, FPL, etc.).
- ` stream`, ` consumer`, ` subject` – JetStream context.
- ` nats_sequence` – JetStream stream sequence, when available.
- ` request_id`, ` trace_id` – correlation identifiers.
- ` error_type` – high-level classification:
- ` business` – payload/validation/domain issues; not suitable for retry.
- ` transient` – network/DB/NATS glitches that may succeed on retry.
- ` fatal` – programming errors, schema mismatches, or configuration issues requiring operator attention.
Handler and consumer logs should always be emitted through ` WithMessageContext` to ensure these fields are present where applicable.