Files
urapt/shared/gpg/gpg_test.go
T
owen 981587e83d Initial release: self-hostable APT repository server and CLI
urapt is a self-hostable APT repository server with a companion CLI for
pushing and managing Debian .deb packages.

Server (urapt-server):
- REST API + APT endpoint, SQLite storage (pure-Go modernc driver, no CGO)
- .deb files stored content-addressed on disk, reference-counted for dedup
- Server-managed RSA-4096 OpenPGP signing key (ProtonMail/go-crypto)
- APT indices (Release/InRelease/Packages[.gz/.xz]) generated on demand
  from the DB, cached in memory, signed with the server key
- Full APT model: repositories -> distributions -> components -> architectures
- Bearer-token auth for REST; HTTP Basic auth for private-repo APT reads
- First registrant becomes admin; repo-scoped permissions
  (read/write/read-write/admin) plus owner and server-admin roles
- Multipart package push with control-field extraction, list/show/delete,
  pool serving, blob ref-count cleanup
- Audit log

CLI (urapt):
- register/login/logout/whoami, token management
- repo/distro/component/arch CRUD, member management
- push/pull/ls/show/rm for packages
- apt-config helper that emits apt setup commands (key, sources.list,
  auth.conf for private repos)

Packaging & docs:
- Dockerfile (multi-stage distroless), docker-compose.yml, sample config
- README quick start, architecture overview, config reference, security notes
- PLAN.md design blueprint, CHANGELOG.md, GPL-3.0 LICENSE
- GitHub Actions CI (test, lint, cross-build for linux/darwin amd64/arm64)
- Makefile release target producing static binaries + tarballs + checksums

Tests cover the data-access layer, auth/permission checks, APT index
generation, .deb parsing, GPG signing, the REST API, and the typed API
client. Verified end-to-end on a Raspberry Pi (arm64) pushing and installing
a real package.
2026-06-28 16:57:34 -05:00

69 lines
1.6 KiB
Go

package gpg
import (
"bytes"
"strings"
"testing"
)
func TestGenerateAndSign(t *testing.T) {
k, err := GenerateKey("urapt-server <test.example.com>", 2048)
if err != nil {
t.Fatalf("GenerateKey: %v", err)
}
if k.Fingerprint == "" {
t.Fatal("empty fingerprint")
}
pub, err := k.ArmoredPublic()
if err != nil {
t.Fatalf("ArmoredPublic: %v", err)
}
if !bytes.Contains([]byte(pub), []byte("BEGIN PGP PUBLIC KEY BLOCK")) {
t.Fatal("bad armored public")
}
priv, err := k.ArmoredPrivate()
if err != nil {
t.Fatalf("ArmoredPrivate: %v", err)
}
if !bytes.Contains([]byte(priv), []byte("BEGIN PGP PRIVATE KEY BLOCK")) {
t.Fatal("bad armored private")
}
data := []byte("Origin: urapt\nSuite: stable\n\nContents here.\n")
clear, err := k.ClearSign(data)
if err != nil {
t.Fatalf("ClearSign: %v", err)
}
if !bytes.Contains(clear, []byte("BEGIN PGP SIGNED MESSAGE")) {
t.Fatal("bad clearsign output")
}
pt, err := VerifyClearSign(pub, clear)
if err != nil {
t.Fatalf("VerifyClearSign: %v", err)
}
if strings.ReplaceAll(string(pt), "\r\n", "\n") != string(data) {
t.Fatalf("plaintext mismatch: got %q want %q", pt, data)
}
det, err := k.DetachedSign(data)
if err != nil {
t.Fatalf("DetachedSign: %v", err)
}
if !bytes.Contains(det, []byte("BEGIN PGP SIGNATURE")) {
t.Fatal("bad detached output")
}
if err := VerifyDetached(pub, data, det); err != nil {
t.Fatalf("VerifyDetached: %v", err)
}
k2, err := ParseArmoredPrivate(priv)
if err != nil {
t.Fatalf("ParseArmoredPrivate: %v", err)
}
if k2.Fingerprint != k.Fingerprint {
t.Fatalf("fingerprint mismatch after round-trip: %s != %s", k2.Fingerprint, k.Fingerprint)
}
}