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# pdbmux — merging PuppetDB proxy
`pdbmux` is a small HTTP daemon that fronts **two** PuppetDB backends and serves
a single, merged PuppetDB v4 query surface on one address. Point `node-lookup`,
`pblastreport`, or anything else at `pdbmux` instead of a raw PuppetDB and it
sees one consistent view spanning both.
## Why
During the VM→k8s Puppet migration there are two PuppetDBs:
- **old** — the legacy Consul-registered `http://puppetdbapi.service.consul:8080`
- **new** — the k8s `https://puppetdb.k8s.syd1.au.unkin.net` (TLS terminated at
the gateway; backends are plain PuppetDB on 8080)
Nodes move from old to new as they migrate, so at any moment a given node's
current data lives in exactly one of them. `pdbmux` merges both so consumers
don't have to know (or query twice) which PuppetDB a node currently lives in.
## Endpoints
`pdbmux` proxies **GET** requests only. The `query` param (PuppetDB AST JSON,
not PQL) is forwarded verbatim.
| Path | Behaviour |
|---|---|
| `GET /pdb/query/v4/nodes` | Fan out to both backends, dedupe by `certname`, keep the record with the newer `report_timestamp`. |
| `GET /pdb/query/v4/facts` | Fan out to both, and per `certname` keep **all** facts from the backend that owns that node (see merge semantics). |
| `GET /pdb/query/v4/*` (any other) | Transparently proxied to the **primary** backend, unmerged, streamed verbatim. |
| `GET /healthz` | Per-backend reachability. `200 {"status":"ok"}` if all reachable, `200 degraded` if some fail, `503 down` if all fail. |
Fan-out is concurrent. If one backend errors or times out, `pdbmux` serves the
survivor's results and logs a warning; a merged endpoint only returns `502` when
**every** backend fails. Response records are passed through as raw JSON so
unknown fields survive untouched.
## Merge semantics
- **`/nodes`** — dedupe by `certname`; the record with the strictly-newer
`report_timestamp` wins. On a tie (or when a node exists in only one backend),
the **preferred** backend's record is kept.
- **`/facts`** — node-level granularity. For a `certname` present in both
backends, `pdbmux` keeps **all** of that node's facts from **one** backend and
drops the other's, chosen by the merge strategy:
- **`freshness`** (default) — attribute each `certname` to whichever backend
holds its newer `report_timestamp`. `pdbmux` derives this from a per-certname
freshness map built by querying `/nodes` from both backends, cached for
`freshness_ttl` (default 30s). Ties/fallbacks use `prefer`.
- **`static`** — always keep the `prefer` backend's facts for shared nodes.
No extra `/nodes` query.
- A node present in only one backend always appears (falls back to whichever
backend actually returned facts for it).
## Config
Precedence (lowest → highest): **defaults < config file < env vars (`PDBMUX_*`) < flags**.
Config file: `$XDG_CONFIG_HOME/pdbmux/config.yaml`. In Kubernetes, configuration
is supplied entirely via `PDBMUX_*` env vars (no config file), which is the
supported deployment path — see [Deployment](#deployment).
```yaml
# ~/.config/pdbmux/config.yaml (local dev; in k8s use PDBMUX_* env instead)
listen: ":8080"
backends:
- name: old
url: http://puppetdbapi.service.consul:8080
- name: new
url: https://puppetdb.k8s.syd1.au.unkin.net
primary: new # backend used for non-merged /pdb/query/v4/* pass-through
merge: freshness # freshness | static
prefer: new # winner on ties / static merge / fallback
timeout: 10s # per-upstream request timeout
freshness_ttl: 30s # freshness-map cache TTL (freshness merge only)
```
`backends[*].url` is a **base** URL (`scheme://host[:port]`), without the
`/pdb/query/v4/...` path — `pdbmux` appends the path per request.
| Env var | Overrides |
|---|---|
| `PDBMUX_LISTEN` | `listen` |
| `PDBMUX_PRIMARY` | `primary` |
| `PDBMUX_MERGE` | `merge` |
| `PDBMUX_PREFER` | `prefer` |
| `PDBMUX_TIMEOUT` | `timeout` (Go duration, e.g. `10s`) |
| `PDBMUX_FRESHNESS_TTL` | `freshness_ttl` |
| `PDBMUX_BACKENDS` | whole backend list, as `name=url,name=url` |
Flags: `--listen`, `--primary`, `--merge`.
## Running
```bash
pdbmux # start the proxy (serve is the default action)
pdbmux serve # explicit
pdbmux config init # write a default config file
pdbmux config show # print active config after all overrides
pdbmux version
```
Point a consumer at it:
```bash
node-lookup --url http://localhost:8080/pdb/query/v4/facts -R
NODE_LOOKUP_URL=http://localhost:8080/pdb/query/v4/facts pblastreport somehost
```
## Build
```bash
make build # -> dist/pdbmux (CGO disabled, static)
make test # go test -race ./...
make lint # golangci-lint
```
Requires Go 1.25+. Dependencies: `github.com/spf13/cobra` (CLI),
`gopkg.in/yaml.v3` (config file).
## Deployment
`pdbmux` runs **in Kubernetes** as a container, in line with the all-in-k8s
estate direction — it is not shipped as a per-VM RPM/systemd service. The image
is built and pushed on every `v*` tag (`.woodpecker/docker.yaml`) to:
```
artifactapi.k8s.syd1.au.unkin.net/docker-internal/pdbmux:<tag>
```
It is a minimal static (`CGO_ENABLED=0`) binary on a distroless base
(`Dockerfile`), configured entirely via `PDBMUX_*` env vars, with a single HTTP
listener and `/healthz` for liveness/readiness probes.
The Deployment/Service/Gateway manifests live in the estate's `argocd-apps` repo
under `apps/base/pdbmux/` (namespace `pdbmux`, 2 replicas), and it is exposed to
VM/workstation `node-lookup` consumers over HTTPS at:
```
https://pdbmux.k8s.syd1.au.unkin.net
```
Locally you can still run the binary directly for development:
```bash
PDBMUX_BACKENDS='old=http://puppetdbapi.service.consul:8080,new=http://puppetdb.puppet.svc.cluster.local:8080' \
pdbmux serve
curl -s localhost:8080/healthz
```
## Version bumps
```bash
make patch # tag vX.Y.(Z+1) and push (triggers the docker release)
make minor # tag vX.(Y+1).0
make major # tag v(X+1).0.0
```