Publishing RPMs to GitHub releases is common, but consuming them with dnf
requires repodata that GitHub does not provide, and mirroring every package
into a local repo wastes storage and staleness-tracking on artifacts that
already have a durable home. Expose GitHub releases as a first-class RPM source
that synthesizes repodata on the fly and never precaches the packages.
Add a `github_rpm` remote package type backed by a metadata-only provider:
- Introduce a `RemoteServer` interception hook (the remote-side analog of
`LocalIndexer`): `handleProxy` lets a provider fully answer a request before
the byte-proxy engine, passing the request-derived proxy base URL and the DB
as a `RemoteMetadataStore`.
- Scan a repo's releases via the GitHub API (`base_url` = the releases API
root) for `.rpm` assets, filtered by the remote's `patterns` (regex on asset
filename) and reuse the existing local-rpm repodata generators to emit
`repomd.xml`/`primary`/`filelists`/`other`.
- Derive per-asset metadata without precaching: fetch only the RPM header via a
ranged GET (retrying with a larger range on a truncated-header parse) for
NEVRA, requires/provides/conflicts/obsoletes and files; take the sha256 from
the GitHub asset `digest` when present, else compute it once by streaming.
- Cache derived metadata in `rpm_metadata` keyed by asset path; re-scan no more
often than `mutable_ttl`, pruning assets that disappear upstream.
- Serve each package's `<location>` as the github-relative download path so the
client comes back to this remote, which 302-redirects to the `releases_remote`
(an existing generic github.com remote) that streams the actual bytes.
Reuse the existing `releases_remote` field as the redirect target — it already
carries exactly this "downloads served by remote X" semantic end to end.
Extend the shared RPM metadata model with conflicts/obsoletes (JSONB columns,
added idempotently) so both local and github_rpm repodata resolve upgrades and
conflicts; the local upload path now records them too.
Tests cover header-range parsing with the retry loop, digest-vs-computed
checksum selection, repodata synthesis with the redirect-able location href,
the 302 redirect path, asset pattern filtering, and stale-asset pruning.
## Why
Local terraform repos already served the Terraform **network mirror** protocol, but consuming that requires every user to add a `provider_installation { network_mirror }` block to `~/.terraformrc`. A `source = "artifactapi.k8s.../ns/type"` address instead triggers the **provider registry** protocol (service discovery at `/.well-known/terraform.json` + GPG-signed SHA256SUMS), which returned 404 — hence *"does not offer a provider registry."*
Local repos are meant to be the real thing, so this makes a terraform local repo a first-class provider registry: `terraform init` installs from a bare source address with no client config.
## What
- Serve `/.well-known/terraform.json` service discovery and the `providers.v1` endpoints under `/terraform/v1/providers`: `versions`, `download/{os}/{arch}`, `sha256sums`, `sha256sums.sig`.
- Map the Terraform **namespace** segment to the artifactapi **repo name**; locate the provider by **type**. `download_url` points back at the existing `/api/v1/local/...` path.
- Generate `SHA256SUMS` per version and sign it with a GPG key loaded from `TF_SIGNING_KEY_PATH` (optional `TF_SIGNING_KEY_PASSPHRASE`); advertise the public key + key id in the download response. **No key → registry stays disabled (endpoints 404)**, so behaviour is unchanged until the signing secret is present.
- New `internal/tfsign` (key load + detached signing, via `x/crypto/openpgp`) and `internal/api/terraform` (registry handler). Export `ParseProviderZip` for reuse.
- `TF_PROVIDER_PROTOCOLS` (default `5.0,6.0`) sets the advertised plugin protocols.
- README section documenting usage.
## Consumer
```hcl
terraform {
required_providers {
artifactapi = {
source = "artifactapi.k8s.syd1.au.unkin.net/terraform-unkin/artifactapi"
version = "0.1.2"
}
}
}
```
## Tests
- `internal/tfsign`: sign + verify round-trip, disabled/missing-key paths.
- `internal/api/terraform`: dockerised full flow (discovery → versions → download → sha256sums → sig), verifying the signature against the advertised public key.
## Follow-ups (separate PRs)
- **argocd-apps**: mount the signing K8s secret into the api deployment + set `TF_SIGNING_KEY_PATH`. The `/` HTTPRoute already routes `/.well-known` and `/terraform` to the API, so no gateway change is needed.
- Image/version bump once tagged.
## Note
Anchored the `terraform/` gitignore to the repo root (`/terraform/`) so it stops matching `internal/*/terraform/`. This surfaced `internal/provider/terraform/terraform_extra_test.go`, which had been silently untracked — now committed.
Reviewed-on: #102
Co-authored-by: Ben Vincent <ben@unkin.net>
Co-committed-by: Ben Vincent <ben@unkin.net>
Fixes#67
## Why
The proxy used `http.DefaultClient` for all upstream GET/HEAD and bearer-token requests. It has no timeouts, so a slow or hung upstream holds a goroutine and connection indefinitely.
## Changes
- Add a shared `upstreamClient` (`internal/proxy/httpclient.go`) with dial, TLS-handshake, response-header and idle-connection timeouts, plus connection pooling.
- Deliberately no overall `Client.Timeout`, so large artifact bodies can still stream; total time is bounded by the request context.
- Route all four upstream calls in the engine through it.
## Validation
- `make e2e` passes.
Reviewed-on: #83
Co-authored-by: Ben Vincent <ben@unkin.net>
Co-committed-by: Ben Vincent <ben@unkin.net>
## Summary
- Upload RPMs to local repos, metadata parsed async via cavaliergopher/rpm
- Repodata (repomd.xml, primary/filelists/other.xml.gz) generated on-demand from DB — nothing stored in S3
- RPM provider implements LocalUploader, PostUploadHook, and LocalIndexer
- New rpm_metadata table for parsed RPM header data (name, version, deps, etc.)
- New provider interfaces: PostUploadHook, BlobReader, MetadataStore, RPMMetadataReader
## Test plan
- [x] Upload cowsay RPM from epel → async metadata parse confirmed in logs
- [x] repomd.xml generated with correct hashes → primary.xml.gz has correct metadata
- [x] `dnf install` from local repo: download + install successful
- [x] Bad file rejection (.txt → 400), overwrite rejection (409)
Reviewed-on: #53
Co-authored-by: Ben Vincent <ben@unkin.net>
Co-committed-by: Ben Vincent <ben@unkin.net>
Introduces repo_type (remote/local) as a separate axis from package_type
so that any package type can be hosted locally. A terraform local repo
is package_type=terraform + repo_type=local.
- Remote model gains RepoType field (defaults to "remote")
- Database schema adds repo_type column with migration for existing DBs
- V1 proxy adds /api/v1/local/{name}/* route for serving local files
- V2 upload via PUT /api/v2/remotes/{name}/files/{ns}/{type}/{file}.zip
validates filename matches terraform-provider-{type}_{ver}_{os}_{arch}.zip
and returns 409 on duplicate (no overwrites)
- index.json and {version}.json are computed on-the-fly from uploaded zips
rather than stored as separate files
- V2 create validates repo_type and requires base_url only for remotes
---------
Co-authored-by: Ben Vincent <ben@unkin.net>
Reviewed-on: #49