# Observability (OpenTelemetry) hyperhive has built-in support for exporting per-agent Claude Code statistics — token usage, cost, tool call counts — to any OTLP-compatible collector via Claude Code's built-in OpenTelemetry integration. This is a **hive-wide** setting: one switch in the host NixOS config enables it for every agent container simultaneously. There is no per-agent opt-in or opt-out. ## Enabling export ```nix services.hyperhive.otel = { enable = true; endpoint = "https://collector.example.com/otel"; }; ``` `enable` is the single gate. `endpoint` is where telemetry ends up after it leaves the swarm — optional, because the swarm's own metrics store (`swarm.victoriametrics.enable`) is a destination in its own right. With both, telemetry goes to both. See [`swarm/services.md`](swarm/services.md#metrics-victoriametrics--grafana). **There is exactly one way telemetry leaves a hive: through the collector that `enable` starts on the host.** Agents never talk to `endpoint` themselves — they export unauthenticated to a bridge address only their own containers can reach. That collector forwards to the swarm's ([`swarm/services.md`](swarm/services.md#telemetry-collector-otel)), which is the single process holding the upstream credential and the only writer to the swarm's store. No agent holds a copy, and neither does this hive. The hive collector reaches the swarm collector by its gateway name (`swarm.otel.domain`, default `otel.`) — the same DNS-and-CA-trust shape every hive-to-swarm-service hop uses, not a URL an operator has to point anywhere. A hive that does not run the swarm's services still resolves that name through the gateway; nothing here needs setting for the split-host case. ⚠️ **The collector is therefore in the path of all telemetry.** It runs on the same host as the agents and restarts on failure, and telemetry is not the control plane — degraded telemetry is not degraded operation — but the export no longer survives independently of anything host-side. ### what the agent→collector hop is and isn't **It has no application-level auth.** The receiver takes any OTLP that reaches it; what bounds who can reach it is the firewall — `exposeHostPorts` opens the port on the bridge interface only. So "unauthenticated to a bridge address" means *reachable from an agent container*, not *presents a credential*. The consequence, stated because it is a choice rather than an oversight: **any agent can push arbitrary OTLP, and it is forwarded on under the operator's credential.** Neither tier can tell a container's genuine Claude Code stats from anything else shaped like OTLP arriving on that port — including data smuggled out in resource attributes on an otherwise-legitimate export. That is a **different risk from the one the collector fixes**, and strictly smaller than what preceded it: before, every agent held the upstream credential itself, so it could do all of the above *and* use the token anywhere else. The collector removes the token and keeps the pipe. Agents are inside the trust boundary (`docs/security.md`: capability = accepted risk), so an agent being able to *send* is an accepted extension of that boundary — but it is not closed by this design, and nothing here should be read as closing it. ## Options reference Every `services.hyperhive.otel.*` option's full type/default/description/ example is generated straight from the nix module (`nix/host-modules/ otel.nix`) into [`/options/`](/options/) (host options — `nix build .#docs-host` for a local render). That page is kept honest by the build in a way a hand-copied version here cannot be, so it is the reference, not this doc. What follows is what a flat per-option listing can't express: the two-tier architecture, the security model, and how the options interact. ## The two collectors Telemetry crosses two collectors, and which one you configure depends on what the host is: | | runs where | receives from | does | |---|---|---|---| | **hive tier** — `otel.enable` | every hive with agents | that hive's agents, on the bridge | forwards to the swarm tier. Holds no credential, picks no destination | | **swarm tier** — `swarm.otel.enable` | once per swarm | every hive's collector | writes the swarm's store and exports upstream | An all-local host runs both, and needs nothing said about the hop between them. ```nix services.hyperhive.otel = { enable = true; endpoint = "https://collector.example.com/otel"; # the upstream headersCredential = "/run/secrets/otel-headers"; # only the swarm tier reads it }; ``` **Why the hive tier isn't optional.** Exporting straight to `endpoint` means every agent needs the credential to authenticate — and the harness delivers that token into the agent's own `~/.claude/settings.json`, a file the agent can read. `0600` protects it from other containers, not from the agent itself. As long as the direct path stays *selectable*, that hole stays selectable; an option that can reintroduce it is a hole with extra steps. **Why the tiers stay separate on one box.** They are not collapsed when co-located: an all-local hive is a statement about *where* processes run, not about the shape of the deployment. A boundary that disappears locally is one the local deployment stops testing. **`endpoint` keeps meaning "where telemetry goes upstream."** Neither tier redefines it — the agent-facing value is *derived* (`http://:`), so an existing deployment's `endpoint` keeps working unchanged. The bridge port is contributed to `exposeHostPorts` automatically; there is nothing to open by hand. ### Authenticated ingest The swarm tier gives **each hive its own receiver**, and stamps the `hive` label from whichever receiver accepted a sample. A hive therefore cannot report metrics as another hive, and cannot relabel its own by editing what it sends — the label is not taken from the payload at all. **On an all-local swarm there is nothing to set.** Each hive already has an identity, and its collector reads the secret that host's own authelia minted. **On a hive that does not host the swarm's services**, the secret has to arrive somehow — copy it across and name it: ```nix services.hyperhive.otel.clientSecretFile = "/run/secrets/hive-telemetry.secret"; ``` **There is no unauthenticated mode.** A hive always presents an identity, so a missing credential is a build error rather than a quieter fallback — the collector has no anonymous route to accept samples on, and every path it serves belongs to exactly one hive. Getting the secret wrong shows up as the hive's collector logging 401s from the swarm tier and no metrics appearing for that hive. ⚠️ **`endpoint` must be valid for `protocol`.** The upstream exporter follows `otel.protocol` (`grpc` → the gRPC exporter, otherwise OTLP/HTTP), and the gRPC exporter takes an *address*: `https://host/path` is a legal `OTEL_EXPORTER_OTLP_ENDPOINT` for HTTP but fails as gRPC with *"missing port in address"*. The collector's config is validated at build time, so a mismatch is a build error naming the reason rather than telemetry silently going nowhere. ## Network access Agent containers can only reach the host on ports 80 and 443 by default. To let them reach some other host-local service you run yourself — a database, a scratch HTTP endpoint — open its port on the bridge: ```nix services.hyperhive.network.exposeHostPorts = [ 5432 ]; ``` and point whatever consumes it at `10.42.0.1:5432` rather than loopback: inside a container, loopback is the *container*. The bridge IP is the host's address on the `hive-br0` bridge. The service must also bind an address the bridge can reach — a `127.0.0.1`-only listener stays unreachable no matter what the firewall allows. See `docs/network.md::Reaching host services` for details. ⚠️ **None of this is needed for hyperhive's own telemetry** — `otel.enable` contributes the collector's port and derives the agent-facing endpoint itself. ## Built-in resource labels The OTLP variables (`OTEL_EXPORTER_OTLP_ENDPOINT`, `_PROTOCOL`, `OTEL_RESOURCE_ATTRIBUTES`, the temporality preference) are set **container wide** — in systemd's `DefaultEnvironment` and in `/etc/profile` — so every process in an agent container exports to the hive's collector without any per-tool wiring. That covers Claude Code, `hive-metric`, and anything you run yourself from a tool call or `hivectl shell`. Every agent's export therefore includes these resource attributes automatically: | Attribute | Value | |-----------|-------| | `service.name` | `hyperhive-agent` (constant) | | `agent` | agent logical name (e.g. `iris`) | | `hive` | hive display name (`services.hyperhive.hiveName`) | | `swarm` | swarm display name (`services.hyperhive.swarm.name`, if set) | Additional labels can be appended via `extraResourceAttributes` (see option reference above); custom per-data-point labels can be passed with `hive-metric --labels` (see below). ## Host-emitted container-resource metrics (hive-c0re) When OTEL is enabled, **hive-c0re itself** also exports each agent container's resource load — the same cgroup gauges shown on the dashboard LOAD tab — to this hive's own collector, exactly like an agent does and with no separate toggle. These come from the host, not the in-container Claude SDK, so they cover containers even when their agent is idle. Emitted via the OpenTelemetry Rust SDK, using the [semconv `container.*`](https://opentelemetry.io/docs/specs/semconv/system/container-metrics/) metric names + the standard `container.name` attribute where a spec metric exists, so off-the-shelf OTEL/Grafana container dashboards work. Resource `service.name = hyperhive-c0re`; each data point is tagged `container.name` (= the `h-` machine) and the hive `agent` label: | Metric | Unit | Kind | Source | |--------|------|------|--------| | `container.cpu.time` | `s` | counter | cumulative `cpu.stat` `usage_usec` → seconds | | `container.memory.usage` | `By` | gauge | `memory.current` | | `hyperhive.container.memory.limit` | `By` | gauge | `memory.max` (custom — semconv has no `.limit` metric; omitted when unlimited) | | `hyperhive.container.memory.peak` | `By` | gauge | `memory.peak` (custom — no semconv metric; omitted if unavailable) | | `hyperhive.container.storage.usage` | `By` | gauge | state dir + writable rootfs (custom — semconv only has `disk.io`; omitted until the slow disk sampler runs) | | `hyperhive.container.cpu.percent` | `%` | gauge | host-normalised percent (custom — the value the dashboard LOAD tab shows, no `rate()` needed) | The `hyperhive.`-prefixed metrics have no semconv equivalent (memory limit + peak, on-disk footprint, and an instantaneous cpu percent kept alongside the spec `container.cpu.time` counter for convenience). Hive labels (`hive`, `swarm`, …) ride on the resource via `extraResourceAttributes`. Cadence follows `metricIntervalMs` (default 60s). Transport is OTLP/HTTP (JSON) to the hive collector's bridge address, with no auth header — that first hop is unauthenticated for every producer on this host, and the upstream credential stays on the swarm tier. ## Agent-emitted custom metrics (`hive-metric`) Agents can push arbitrary labeled metrics to the same OTEL collector via the `hive-metric` CLI tool, available in every agent container when `services.hyperhive.otel.enable = true`. ### Usage ```text hive-metric [--type counter|gauge] [--labels key=value...] ``` - `` — metric name (e.g. `tasks_completed`, `latency_ms`). - `` — numeric value (f64; integers and floats both accepted). - `--type counter|gauge` — metric kind: `counter` (cumulative sum, default) or `gauge` (instantaneous point-in-time value). - `--labels key=value` — extra per-data-point labels. May be repeated. The resource labels (agent, hive, swarm, service.name) are inherited automatically from `OTEL_RESOURCE_ATTRIBUTES` — do not re-specify them. ### Examples ```text # Counter: cumulative tasks finished (default type — no --type flag needed) hive-metric tasks_completed 1 --labels phase=scan # Gauge: current queue depth (absolute value — must use --type gauge) hive-metric queue_depth 17 --type gauge # Float gauge with multiple labels (instantaneous measurement) hive-metric api_latency_ms 142.5 --type gauge --labels model=sonnet --labels tier=api ``` ### Error when OTEL is not configured When `services.hyperhive.otel.enable = false` (the default), the `OTEL_EXPORTER_OTLP_ENDPOINT` env var is not set and `hive-metric` exits with an informative error message. No silently-dropped metrics. ### Wire format `hive-metric` always uses **OTLP HTTP/JSON** (`application/json` POST to `$OTEL_EXPORTER_OTLP_ENDPOINT/v1/metrics`), regardless of the `OTEL_EXPORTER_OTLP_PROTOCOL` setting. Auth headers from `OTEL_EXPORTER_OTLP_HEADERS` are forwarded verbatim. ## Metrics temporality OTEL export is always configured with **cumulative** temporality (`OTEL_EXPORTER_OTLP_METRICS_TEMPORALITY_PREFERENCE=cumulative`), overriding Claude Code's default of DELTA. This avoids silent metric drops in Prometheus-family backends (including Grafana LGTM / Mimir) that don't ship a delta-to-cumulative processor.