Files
felhom-controller/controller/internal/settings/storage_discovery_test.go
T
admin 2d4d43203f v0.64.0: additive storage discovery (A1) + internal-SSD label (A2)
A1: AutoDiscoverStoragePaths no longer bails on a non-empty registry;
registers only deployed-app paths missing from the registry. Never
mutates/removes existing entries, never re-adds or reactivates a path
present in ANY state (incl. Decommissioned), never flips IsDefault.
A2: InferStorageLabel maps base==felhom-data namespace dir to
'Belső SSD (rendszer)' to disambiguate the internal system volume.
Table-driven tests incl. a companion that fails without the
skip-by-presence guard.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-14 17:33:08 +02:00

230 lines
7.6 KiB
Go

package settings
import (
"io"
"log"
"path/filepath"
"reflect"
"testing"
)
// newTestSettings returns a Settings backed by a writable temp file so save() works.
func newTestSettings(t *testing.T, paths []StoragePath) *Settings {
t.Helper()
logger := log.New(io.Discard, "", 0)
s, err := Load(filepath.Join(t.TempDir(), "settings.json"), logger)
if err != nil {
t.Fatalf("Load: %v", err)
}
s.StoragePaths = paths
return s
}
// TestAutoDiscoverStoragePaths_Additive covers the additive registration behaviour and
// its invariants: existing entries are never mutated, decommissioned entries are never
// reactivated, and IsDefault is never promoted over an existing default.
func TestAutoDiscoverStoragePaths_Additive(t *testing.T) {
logger := log.New(io.Discard, "", 0)
tests := []struct {
name string
existing []StoragePath
discovered []string
fallback string
wantPaths []string // expected Path set after discovery (order-insensitive)
wantNewPath string // a path expected to be newly added (may be "")
// assertions run against the resulting registry
check func(t *testing.T, s *Settings, before []StoragePath)
}{
{
name: "non-empty registry registers only the missing deployed path",
existing: []StoragePath{
{Path: "/mnt/felhom-usb", Label: "Külső tárhely (felhom-usb)", IsDefault: true, Schedulable: true, AddedAt: "2026-01-01T00:00:00Z"},
},
discovered: []string{"/mnt/felhom-usb", "/mnt/hdd_2"}, // existing + a new one
wantPaths: []string{"/mnt/felhom-usb", "/mnt/hdd_2"},
wantNewPath: "/mnt/hdd_2",
check: func(t *testing.T, s *Settings, before []StoragePath) {
// pre-existing entry must be byte-identical (incl. IsDefault unchanged)
got := findPath(s, "/mnt/felhom-usb")
if got == nil {
t.Fatalf("pre-existing path vanished")
}
if !reflect.DeepEqual(*got, before[0]) {
t.Errorf("pre-existing entry mutated:\n before=%+v\n after =%+v", before[0], *got)
}
// the newly-added path must NOT have stolen default
nw := findPath(s, "/mnt/hdd_2")
if nw == nil {
t.Fatalf("new path /mnt/hdd_2 not registered")
}
if nw.IsDefault {
t.Errorf("new path promoted to default over existing default")
}
if !nw.Schedulable {
t.Errorf("new path should be schedulable")
}
},
},
{
name: "registry with no default lets first new path become default",
existing: []StoragePath{
{Path: "/mnt/felhom-usb", Label: "x", IsDefault: false, Schedulable: true, AddedAt: "2026-01-01T00:00:00Z"},
},
discovered: []string{"/mnt/hdd_2", "/mnt/hdd_3"},
wantPaths: []string{"/mnt/felhom-usb", "/mnt/hdd_2", "/mnt/hdd_3"},
wantNewPath: "/mnt/hdd_2",
check: func(t *testing.T, s *Settings, before []StoragePath) {
d2 := findPath(s, "/mnt/hdd_2")
d3 := findPath(s, "/mnt/hdd_3")
if d2 == nil || d3 == nil {
t.Fatalf("new paths not registered")
}
if !d2.IsDefault {
t.Errorf("first new path should become default when registry has none")
}
if d3.IsDefault {
t.Errorf("only one new path may become default")
}
},
},
{
name: "empty registry behaves like the original (first becomes default)",
existing: nil,
discovered: []string{"/mnt/felhom-usb", "/mnt/hdd_2"},
wantPaths: []string{"/mnt/felhom-usb", "/mnt/hdd_2"},
wantNewPath: "/mnt/felhom-usb",
check: func(t *testing.T, s *Settings, before []StoragePath) {
first := findPath(s, "/mnt/felhom-usb")
if first == nil || !first.IsDefault {
t.Errorf("first discovered path should be default in an empty registry")
}
},
},
{
name: "fallback path registered when missing",
existing: []StoragePath{
{Path: "/mnt/felhom-usb", Label: "x", IsDefault: true, Schedulable: true, AddedAt: "2026-01-01T00:00:00Z"},
},
discovered: nil,
fallback: "/mnt/legacy_hdd",
wantPaths: []string{"/mnt/felhom-usb", "/mnt/legacy_hdd"},
wantNewPath: "/mnt/legacy_hdd",
check: nil,
},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
s := newTestSettings(t, cloneStoragePaths(tc.existing))
before := cloneStoragePaths(tc.existing)
s.AutoDiscoverStoragePaths(tc.discovered, tc.fallback, logger)
// Normalize with filepath.Clean so comparisons hold on both Linux (the deploy
// target) and Windows (the dev machine), where Clean uses backslashes.
gotSet := map[string]bool{}
for _, sp := range s.StoragePaths {
gotSet[filepath.Clean(sp.Path)] = true
}
if len(gotSet) != len(tc.wantPaths) {
t.Fatalf("path count = %d, want %d (%v)", len(gotSet), len(tc.wantPaths), pathList(s))
}
for _, w := range tc.wantPaths {
if !gotSet[filepath.Clean(w)] {
t.Errorf("missing expected path %q (have %v)", w, pathList(s))
}
}
if tc.wantNewPath != "" && findPath(s, tc.wantNewPath) == nil {
t.Errorf("expected new path %q to be registered", tc.wantNewPath)
}
if tc.check != nil {
tc.check(t, s, before)
}
})
}
}
// TestAutoDiscoverStoragePaths_DecommissionedNotReactivated is the companion guard: a
// decommissioned path that is still referenced by a deployed app must NOT be re-added or
// reactivated. This test FAILS if the skip-by-presence guard is removed.
func TestAutoDiscoverStoragePaths_DecommissionedNotReactivated(t *testing.T) {
logger := log.New(io.Discard, "", 0)
existing := []StoragePath{
{Path: "/mnt/old_hdd", Label: "Külső tárhely (old_hdd)", IsDefault: false, Schedulable: true, AddedAt: "2026-01-01T00:00:00Z", Decommissioned: true, DecommissionedAt: "2026-02-01T00:00:00Z", MigratedTo: "/mnt/felhom-usb"},
{Path: "/mnt/felhom-usb", Label: "x", IsDefault: true, Schedulable: true, AddedAt: "2026-01-01T00:00:00Z"},
}
s := newTestSettings(t, cloneStoragePaths(existing))
before := cloneStoragePaths(existing)
// A deployed app still points at the decommissioned drive.
s.AutoDiscoverStoragePaths([]string{"/mnt/old_hdd", "/mnt/felhom-usb"}, "", logger)
if len(s.StoragePaths) != 2 {
t.Fatalf("path count changed: got %d want 2 (%v)", len(s.StoragePaths), pathList(s))
}
got := findPath(s, "/mnt/old_hdd")
if got == nil {
t.Fatalf("decommissioned path vanished")
}
if !got.Decommissioned {
t.Errorf("decommissioned path was REACTIVATED (skip-by-presence guard missing)")
}
if !reflect.DeepEqual(*got, before[0]) {
t.Errorf("decommissioned entry mutated:\n before=%+v\n after =%+v", before[0], *got)
}
}
func TestInferStorageLabel(t *testing.T) {
tests := []struct {
path string
want string
}{
{"/mnt/sys_drive/felhom-data", "Belső SSD (rendszer)"},
{"/var/lib/felhom/felhom-data", "Belső SSD (rendszer)"},
{"/mnt/felhom-usb", "Tárhely (felhom-usb)"}, // "felhom-usb" doesn't start with "usb"
{"/mnt/hdd_1", "Külső tárhely (hdd_1)"},
{"/mnt/ssd_data", "Külső tárhely (ssd_data)"},
{"/srv/backups", "Tárhely (backups)"},
}
for _, tc := range tests {
if got := InferStorageLabel(tc.path); got != tc.want {
t.Errorf("InferStorageLabel(%q) = %q, want %q", tc.path, got, tc.want)
}
}
}
// --- helpers ---
func cloneStoragePaths(in []StoragePath) []StoragePath {
if in == nil {
return nil
}
out := make([]StoragePath, len(in))
copy(out, in)
for i := range out {
if in[i].StoppedStacks != nil {
out[i].StoppedStacks = append([]string(nil), in[i].StoppedStacks...)
}
}
return out
}
func findPath(s *Settings, path string) *StoragePath {
want := filepath.Clean(path)
for i := range s.StoragePaths {
if filepath.Clean(s.StoragePaths[i].Path) == want {
return &s.StoragePaths[i]
}
}
return nil
}
func pathList(s *Settings) []string {
var out []string
for _, sp := range s.StoragePaths {
out = append(out, sp.Path)
}
return out
}