mirror of
https://github.com/J3vb/OwnCord.git
synced 2026-09-03 03:50:00 +03:00
`Server/go.mod` declared `github.com/owncord/server` while the public repository is `github.com/J3vb/OwnCord`. Nothing resolves that path — there is no `owncord` GitHub org and no vanity-import host serving go-import metadata for it — so every import line in the tree named a location that does not exist. It compiles because a main module's own path is never fetched, which is exactly why it went unnoticed. The obvious fix — an AST-aware import rewriter (`gomvpkg`, `go mod edit`) — is wrong here, and provably so. Six of the 722 occurrences are not imports at all: `api/main_test.go:20` (a goleak `IgnoreTopFunction` pattern), `telemetry/metrics.go:17-19` (three OTel instrumentation-scope names), `invariants/syncutil_locks.go:73` (a diagnostic message), and `invariants/syncutil_locks_test.go:56` (an import line inside a raw-string Go fixture). An import rewriter touches none of them, and the compiler cannot see any of them either. Done as one scripted substitution over `git ls-files`, anchored on the full `github.com/owncord/server` string. The anchor matters: `owncord-server` is a different identifier — the OTel `service.name` (`config/config.go`, `telemetry/telemetry_otel.go`) and the GHCR image name (`.github/workflows/release.yml`, `docker-compose.yml`) — and a looser pattern would have moved it. It is untouched: 10 occurrences across 9 files, before and after. 350 files, 728 insertions, 728 deletions. 722 occurrences in 344 Go files, plus `go.mod:1`, the `sed` at `Makefile:67`, `Server/CLAUDE.md:3`, `docs/architecture/server.md:5`, and the ledger pair (`findings-ledger.json:3758` plus a `render-ledger.mjs` re-render of `FINDINGS.md`). Zero in any workflow, zero in the Dockerfile, zero in `Server/.golangci.yml` (no `local-prefixes`, `gci`, `importas` or `depguard` rule keys on the module path, so import grouping is not configured anywhere). The plan's blast-radius estimate missed one thing, and it is the one that would have gone red: **gofmt**. `J` (0x4A) sorts before every lowercase letter, so in the 36 files where a module-local import shares a contiguous group with a third-party one, the module's imports must move above `github.com/go-chi/...`. `gofmt -l` was clean before the substitution and listed exactly 36 files after it; `gofmt -w` on those 36 restores it to clean. `gofmt` is an enforced gate — the `formatters` block in `Server/.golangci.yml`, which is S-05 — so a substitution-only commit fails Lint. Verified: both directions, and the line accounting is exact. Every added line in this diff contains the new module path (728) and every removed line contains the old one (728); the count of changed lines containing neither is **zero**, so the gofmt re-sort moved module-path lines only and touched no third-party import. The residual check (`git ls-files -z | xargs -0 grep -n 'github\.com/owncord/server'`) returns exactly two hits, both deliberately out of scope: the RL-13 row in `docs/audit-2026-08-23-repository-layout.md` and the measurement row in this phase's own plan. The compiler-invisible half was proven by reverting *only* `api/main_test.go:20` to the old path on the otherwise-renamed tree: `go build ./...` and `go vet ./api/` both still pass — they see nothing wrong — while `go test ./api/` FAILS, because the runtime function name now carries the new path and goleak stops ignoring `ws.(*Hub).Run.func1`. Restoring the line makes it pass. `go.sum` is byte-identical (no `go mod tidy` was run and none was needed). All four build-tag variants compile; `go vet ./...`, `go vet -tags otel,wazero ./...` and `go vet -tags deadlock ./...` pass; `go test -race ./...` is 16/16 packages green; `go test -tags deadlock ./...` passes; the tag-gated `./plugin/...` (wazero) and `./telemetry/...` (otel) runs pass. `golangci-lint` v2.11.3 — the pinned CI version, rebuilt locally against Go 1.26 because the packaged binary cannot load a 1.26 config — reports **0 issues**. `go run ./cmd/genprotocol` leaves `git diff --exit-code ws/message_types.go ../Client/src/lib/protocolTypes.ts` clean, so the rename does not reach the generated protocol constants. `npx prettier --check .` and `node .superpowers/render-ledger.mjs --check` pass. Not included: `docs/audit-2026-08-23-repository-layout.md` and `docs/plans/b1-repository-foundation-2026-08-25.md` keep the old path — they are the audit row and the measurement that motivated this change, and rewriting them would erase the record of what was measured. They are why the residual check needs a two-path allowance rather than being empty; that allowance is stated above rather than hidden in a pathspec. `telemetry/metrics.go:19` declares `scopeVoice` for a `Server/voice` package that does not exist; the substitution carried the dead path forward verbatim as `github.com/J3vb/OwnCord/Server/voice` rather than fixing it, because correcting a real observability bug inside a mechanical rename would hide it in a 350-file diff. It needs its own item. No `go.work`, no second module, and no vanity-import host was set up — the new path resolves against the real repository, but nothing imports this module as a library, so `go get` reachability was not exercised either way. Refs RL-13, L-12
320 lines
10 KiB
Go
320 lines
10 KiB
Go
// Phase C Step 9 — PluginAdminHandler tests.
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//
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// The handler is covered at the HTTP boundary so the fixtures do not depend
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// on the Wazero runtime. A nil Registry exercises the "plugin runtime
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// disabled" branch; a real Registry wired against a real in-memory DB
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// exercises the happy path.
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package api
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import (
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"archive/zip"
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"bytes"
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"context"
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"encoding/json"
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"io"
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"mime/multipart"
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"net/http"
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"net/http/httptest"
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"path/filepath"
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"strings"
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"testing"
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"github.com/J3vb/OwnCord/Server/db"
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"github.com/J3vb/OwnCord/Server/plugin"
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)
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// openPluginTestDB opens an in-memory database with the full migration set so
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// the plugins and plugin_kv tables exist. *db.DB satisfies the plugin.Config
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// Store interface directly (D3 removed the store abstraction).
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func openPluginTestDB(t *testing.T) *db.DB {
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t.Helper()
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database, err := db.Open(":memory:")
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if err != nil {
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t.Fatalf("db.Open: %v", err)
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}
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t.Cleanup(func() { _ = database.Close() })
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if err := db.Migrate(database); err != nil {
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t.Fatalf("db.Migrate: %v", err)
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}
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return database
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}
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func TestPluginsHandlerListEmptyWhenRegistryNil(t *testing.T) {
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h := NewPluginAdminHandler(nil, nil)
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req := httptest.NewRequest("GET", "/", nil)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusOK {
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t.Fatalf("status: got %d, want 200", rec.Code)
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}
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if strings.TrimSpace(rec.Body.String()) != "[]" {
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t.Fatalf("expected empty JSON array, got %q", rec.Body.String())
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}
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}
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func TestPluginsHandlerInstallRejectsWhenRegistryNil(t *testing.T) {
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h := NewPluginAdminHandler(nil, nil)
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body, contentType := buildZipUpload(t, validPluginZip(t))
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req := httptest.NewRequest("POST", "/install", body)
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req.Header.Set("Content-Type", contentType)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusServiceUnavailable {
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t.Fatalf("status: got %d, want 503", rec.Code)
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}
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}
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func TestPluginsHandlerInstallRejectsNonZipContentType(t *testing.T) {
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reg := newTestPluginRegistry(t)
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h := NewPluginAdminHandler(reg, nil)
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// Build a multipart body whose file part is labelled as text/plain.
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var buf bytes.Buffer
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mw := multipart.NewWriter(&buf)
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partHeader := make(map[string][]string)
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partHeader["Content-Disposition"] = []string{`form-data; name="plugin"; filename="evil.txt"`}
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partHeader["Content-Type"] = []string{"text/plain"}
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part, err := mw.CreatePart(partHeader)
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if err != nil {
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t.Fatal(err)
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}
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if _, err := part.Write(validPluginZip(t)); err != nil {
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t.Fatal(err)
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}
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_ = mw.Close()
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req := httptest.NewRequest("POST", "/install", &buf)
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req.Header.Set("Content-Type", mw.FormDataContentType())
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusUnsupportedMediaType {
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t.Fatalf("status: got %d, want 415; body=%s", rec.Code, rec.Body.String())
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}
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}
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func TestPluginsHandlerInstallRejectsNonZipMagic(t *testing.T) {
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reg := newTestPluginRegistry(t)
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h := NewPluginAdminHandler(reg, nil)
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body, contentType := buildZipUpload(t, []byte("this is definitely not a zip"))
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req := httptest.NewRequest("POST", "/install", body)
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req.Header.Set("Content-Type", contentType)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusBadRequest {
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t.Fatalf("status: got %d, want 400; body=%s", rec.Code, rec.Body.String())
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}
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}
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func TestPluginsHandlerInstallHappyPath(t *testing.T) {
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reg := newTestPluginRegistry(t)
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mem := openPluginTestDB(t)
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// Wire the store into the handler so /list can show the new row. The
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// registry already writes via its own PluginStore.
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h := NewPluginAdminHandler(reg, mem)
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body, contentType := buildZipUpload(t, validPluginZip(t))
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req := httptest.NewRequest("POST", "/install", body)
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req.Header.Set("Content-Type", contentType)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusCreated {
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t.Fatalf("status: got %d, want 201; body=%s", rec.Code, rec.Body.String())
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}
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if !strings.Contains(rec.Body.String(), "hello") {
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t.Fatalf("expected plugin name in response, got %q", rec.Body.String())
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}
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}
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// The admin panel's empty state distinguishes "no plugins installed" from
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// "the runtime is off", which it can only do from this header.
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func TestPluginsHandlerListReportsRuntimeState(t *testing.T) {
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off := NewPluginAdminHandler(nil, nil)
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rec := httptest.NewRecorder()
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off.ServeHTTP(rec, httptest.NewRequest("GET", "/", nil))
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if got := rec.Header().Get("X-Plugin-Runtime"); got != "disabled" {
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t.Fatalf("nil registry: X-Plugin-Runtime = %q, want %q", got, "disabled")
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}
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on := NewPluginAdminHandler(newTestPluginRegistry(t), openPluginTestDB(t))
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rec = httptest.NewRecorder()
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on.ServeHTTP(rec, httptest.NewRequest("GET", "/", nil))
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if got := rec.Header().Get("X-Plugin-Runtime"); got != "enabled" {
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t.Fatalf("live registry: X-Plugin-Runtime = %q, want %q", got, "enabled")
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}
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}
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// The panel reads snake_case fields; without JSON tags these marshal as
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// Go field names and every column renders empty.
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func TestPluginsHandlerListUsesSnakeCaseJSON(t *testing.T) {
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reg, mem := newTestPluginRegistryWithStore(t)
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h := NewPluginAdminHandler(reg, mem)
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body, contentType := buildZipUpload(t, validPluginZip(t))
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req := httptest.NewRequest("POST", "/install", body)
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req.Header.Set("Content-Type", contentType)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusCreated {
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t.Fatalf("install: got %d, want 201; body=%s", rec.Code, rec.Body.String())
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}
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rec = httptest.NewRecorder()
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h.ServeHTTP(rec, httptest.NewRequest("GET", "/", nil))
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if rec.Code != http.StatusOK {
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t.Fatalf("list: got %d, want 200", rec.Code)
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}
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var rows []map[string]any
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if err := json.Unmarshal(rec.Body.Bytes(), &rows); err != nil {
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t.Fatalf("list body is not JSON: %v (%s)", err, rec.Body.String())
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}
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if len(rows) != 1 {
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t.Fatalf("expected 1 plugin row, got %d", len(rows))
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}
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for _, key := range []string{"id", "name", "version", "enabled", "installed_at"} {
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if _, ok := rows[0][key]; !ok {
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t.Fatalf("missing %q in plugin row: %v", key, rows[0])
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}
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}
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}
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func TestPluginsHandlerEnableDisableUninstallReturn503WhenRegistryNil(t *testing.T) {
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h := NewPluginAdminHandler(nil, nil)
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for _, tc := range []struct{ method, path string }{
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{"POST", "/1/enable"},
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{"POST", "/1/disable"},
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{"DELETE", "/1"},
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} {
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req := httptest.NewRequest(tc.method, tc.path, nil)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusServiceUnavailable {
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t.Fatalf("%s %s status: got %d, want 503", tc.method, tc.path, rec.Code)
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}
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}
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}
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func TestPluginsHandlerLifecycleInvalidID(t *testing.T) {
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reg := newTestPluginRegistry(t)
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h := NewPluginAdminHandler(reg, nil)
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req := httptest.NewRequest("POST", "/not-an-int/enable", nil)
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rec := httptest.NewRecorder()
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h.ServeHTTP(rec, req)
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if rec.Code != http.StatusBadRequest {
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t.Fatalf("status: got %d, want 400", rec.Code)
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}
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}
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func TestIsZipContentType(t *testing.T) {
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cases := map[string]bool{
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"application/zip": true,
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"application/zip; charset=binary": true,
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"APPLICATION/ZIP": true,
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"application/x-zip-compressed": true,
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"application/octet-stream": true,
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"text/plain": false,
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"image/png": false,
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"": false,
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"application/json; charset=utf-8": false,
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}
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for ct, want := range cases {
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if got := isZipContentType(ct); got != want {
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t.Errorf("isZipContentType(%q) = %v, want %v", ct, got, want)
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}
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}
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}
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func TestHasZipMagic(t *testing.T) {
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cases := map[string]bool{
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"PK\x03\x04rest": true,
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"PK\x05\x06": true,
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"PK\x07\x08rest": false, // spanned-archive signature; not accepted here
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"not a zip": false,
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"": false,
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"PK": false,
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}
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for body, want := range cases {
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if got := hasZipMagic([]byte(body)); got != want {
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t.Errorf("hasZipMagic(%q) = %v, want %v", body, got, want)
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}
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}
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}
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// ── helpers ────────────────────────────────────────────────────────────────
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func newTestPluginRegistry(t *testing.T) *plugin.Registry {
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t.Helper()
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reg, _ := newTestPluginRegistryWithStore(t)
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return reg
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}
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// newTestPluginRegistryWithStore returns a registry alongside the database it
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// writes to, for tests that then read the rows back through the handler. The
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// two must be the same store, or the list is empty no matter what installed.
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func newTestPluginRegistryWithStore(t *testing.T) (*plugin.Registry, *db.DB) {
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t.Helper()
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dir := t.TempDir()
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mem := openPluginTestDB(t)
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reg, err := plugin.NewRegistry(plugin.Config{
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Directory: filepath.Join(dir, "plugins"),
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Store: mem,
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})
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if err != nil {
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t.Fatalf("plugin.NewRegistry: %v", err)
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}
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t.Cleanup(func() { _ = reg.Close(context.Background()) })
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return reg, mem
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}
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// validPluginZip returns a minimal but structurally valid plugin package:
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// a plugin.json manifest at the root plus a near-empty hello.wasm that is
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// large enough to pass the entrypoint stat but small enough to fly well
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// under the zip-bomb cap.
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func validPluginZip(t *testing.T) []byte {
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t.Helper()
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var buf bytes.Buffer
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zw := zip.NewWriter(&buf)
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mj, err := zw.Create("plugin.json")
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if err != nil {
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t.Fatal(err)
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}
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if _, err := mj.Write([]byte(`{"name":"hello","version":"0.1.0","entrypoint":"hello.wasm","permissions":["commands"]}`)); err != nil {
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t.Fatal(err)
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}
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w, err := zw.Create("hello.wasm")
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if err != nil {
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t.Fatal(err)
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}
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// Minimal "placeholder" wasm magic bytes. Default build does not attempt
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// to compile the module, so any bytes with the wasm magic suffice for
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// InstallFromZip's on-disk validation.
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if _, err := w.Write([]byte("\x00asm\x01\x00\x00\x00")); err != nil {
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t.Fatal(err)
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}
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if err := zw.Close(); err != nil {
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t.Fatal(err)
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}
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return buf.Bytes()
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}
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// buildZipUpload wraps bodyBytes in a multipart form with a single "plugin"
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// file part labelled as application/zip.
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func buildZipUpload(t *testing.T, bodyBytes []byte) (io.Reader, string) {
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t.Helper()
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var buf bytes.Buffer
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mw := multipart.NewWriter(&buf)
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partHeader := make(map[string][]string)
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partHeader["Content-Disposition"] = []string{`form-data; name="plugin"; filename="hello.zip"`}
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partHeader["Content-Type"] = []string{"application/zip"}
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part, err := mw.CreatePart(partHeader)
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if err != nil {
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t.Fatal(err)
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}
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if _, err := part.Write(bodyBytes); err != nil {
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t.Fatal(err)
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}
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if err := mw.Close(); err != nil {
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t.Fatal(err)
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}
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return &buf, mw.FormDataContentType()
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}
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