Files
yellowjacket/backend/explore/artifactimport_test.go
T
yonluandClaude Sonnet 5 e190fd75b9
Build & publish Arch package / arch-package (push) Successful in 2m12s
Search index maintenance / maintain-index (push) Successful in 2h22m28s
feat: data lifecycle rewrite, download clients, wanted list, and central catalog index
Ships the fresh-start schema cleanup: rebuilt explore catalog index
pipeline (dump import, artifact fetch/build, incremental listen-count
refresh), a new download subsystem (Lidarr/Prowlarr/qBittorrent/SABnzbd/
slskd/yt-dlp providers, staging, reconciliation, wanted list), and the
supporting schema/query/store changes across backend and frontend.

Also includes two smaller follow-ups: bump the central index's
rebuild-after cadence from 90 to 180 days, and remove the Explore
"library only" online/offline toggle entirely (frontend-only, no
backend counterpart) rather than carry unused UI/state.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Y2Agd9af5hE7qzti2ackiS
2026-08-06 17:12:01 -04:00

445 lines
12 KiB
Go

package explore
import (
"context"
"database/sql"
"os"
"path/filepath"
"strings"
"testing"
"yellowjacket/backend/database"
)
// artifactRow is one catalog row written into a test artifact.
type artifactRow struct {
entityType string
mbid string
title string
artistName string
artistMBID string
popularity int
}
// writeTestArtifact builds an artifact file matching what cmd/indexexport
// produces: catalog columns only, no FTS, no triggers.
func writeTestArtifact(
t *testing.T, meta map[string]string, rows []artifactRow,
) string {
t.Helper()
path := filepath.Join(t.TempDir(), "core-index.db")
db, err := sql.Open("sqlite", "file:"+path)
if err != nil {
t.Fatalf("open artifact: %v", err)
}
defer func() { _ = db.Close() }()
for _, stmt := range []string{
`CREATE TABLE explore_index (
entity_type TEXT NOT NULL,
mbid TEXT NOT NULL,
title TEXT NOT NULL,
artist_name TEXT NOT NULL,
artist_mbid TEXT NOT NULL,
aliases TEXT NOT NULL DEFAULT '',
popularity INTEGER NOT NULL DEFAULT 0,
listener_count INTEGER NOT NULL DEFAULT 0,
duration INTEGER NOT NULL DEFAULT 0,
caa_release_mbid TEXT NOT NULL DEFAULT '',
release_name TEXT NOT NULL DEFAULT '',
primary_type TEXT NOT NULL DEFAULT '',
secondary_types TEXT NOT NULL DEFAULT '',
release_date TEXT NOT NULL DEFAULT '',
artist_type TEXT NOT NULL DEFAULT '',
country TEXT NOT NULL DEFAULT '',
disambiguation TEXT NOT NULL DEFAULT '',
sort_name TEXT NOT NULL DEFAULT '',
discog_fetched INTEGER NOT NULL DEFAULT 0,
PRIMARY KEY (mbid)
) WITHOUT ROWID`,
`CREATE TABLE artifact_meta (
key TEXT PRIMARY KEY,
value TEXT NOT NULL
)`,
} {
if _, err := db.Exec(stmt); err != nil {
t.Fatalf("create artifact schema: %v", err)
}
}
for k, v := range meta {
if _, err := db.Exec(
`INSERT INTO artifact_meta (key, value) VALUES (?, ?)`, k, v,
); err != nil {
t.Fatalf("stamp artifact meta: %v", err)
}
}
for _, r := range rows {
if _, err := db.Exec(`
INSERT INTO explore_index
(entity_type, mbid, title, artist_name, artist_mbid, popularity)
VALUES (?, ?, ?, ?, ?, ?)`,
r.entityType, r.mbid, r.title, r.artistName, r.artistMBID, r.popularity,
); err != nil {
t.Fatalf("insert artifact row: %v", err)
}
}
return path
}
// validMeta is the artifact_meta a well-formed artifact carries.
func validMeta() map[string]string {
return map[string]string{
"artifact_version": supportedArtifactVersion,
"built_at": "2026-07-17T03:53:43Z",
"listens_applied_series": "2593",
"source_rows": "2052168",
}
}
func TestImportCoreArtifactMergesCatalog(t *testing.T) {
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, testLogger())
path := writeTestArtifact(t, validMeta(), []artifactRow{
{"artist", artA, "Artist A", "Artist A", artA, 5000},
{"artist", artB, "Artist B", "Artist B", artB, 4000},
{"release_group", rgA, "Album A", "Artist A", artA, 3000},
{"recording", recA, "Song A", "Artist A", artA, 2000},
})
if err := si.importCoreArtifact(context.Background(), path); err != nil {
t.Fatalf("importCoreArtifact: %v", err)
}
var got int
if err := db.QueryRowWriter(
"SELECT COUNT(*) FROM explore_index",
).Scan(&got); err != nil {
t.Fatalf("count rows: %v", err)
}
if got != 4 {
t.Errorf("merged %d rows, want 4", got)
}
// The merge must leave the index searchable: the FTS rebuild that
// closes the bulk-load window is the only thing populating it, since
// the triggers were dropped for the duration.
var hits int
if err := db.QueryRowWriter(
`SELECT COUNT(*) FROM explore_index_fts WHERE explore_index_fts MATCH ?`,
"Song",
).Scan(&hits); err != nil {
t.Fatalf("query fts: %v", err)
}
if hits == 0 {
t.Error("FTS index is empty after merge; search would return nothing")
}
}
func TestImportCoreArtifactStampsMeta(t *testing.T) {
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, testLogger())
path := writeTestArtifact(t, validMeta(), []artifactRow{
{"artist", artA, "Artist A", "Artist A", artA, 5000},
})
if err := si.importCoreArtifact(context.Background(), path); err != nil {
t.Fatalf("importCoreArtifact: %v", err)
}
if !si.hasMeta(dumpImportDoneKey) {
t.Error("dump_import_done not stamped; a full dump import would run anyway")
}
// Without this the incremental refresh refuses to run and the
// shipped popularity never updates again.
if series, ok := si.metaInt(listensAppliedSeriesKey); !ok || series != 2593 {
t.Errorf("listens_applied_series = %d (ok=%v), want 2593", series, ok)
}
if !si.hasMeta(coreArtifactVersionKey) {
t.Error("core_artifact_version not stamped")
}
}
// A merge must never downgrade what the index already holds, because a
// user's own library rows and any lazily-fetched detail predate it.
func TestImportCoreArtifactPreservesLocalData(t *testing.T) {
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, testLogger())
si.upsertBatch([]SearchIndexResult{{
EntityType: "recording",
MBID: recA,
Title: "Song A",
ArtistName: "Artist A",
ArtistMBID: artA,
Popularity: 9999,
Duration: 210000,
InLibrary: true,
DiscogFetched: true,
}})
path := writeTestArtifact(t, validMeta(), []artifactRow{
// Lower popularity and no duration: both must lose.
{"recording", recA, "Song A", "Artist A", artA, 10},
})
if err := si.importCoreArtifact(context.Background(), path); err != nil {
t.Fatalf("importCoreArtifact: %v", err)
}
var popularity, duration, inLibrary, discogFetched int
if err := db.QueryRowWriter(`
SELECT popularity, duration, in_library, discog_fetched
FROM explore_index WHERE mbid = ?`, recA,
).Scan(&popularity, &duration, &inLibrary, &discogFetched); err != nil {
t.Fatalf("read merged row: %v", err)
}
if popularity != 9999 {
t.Errorf("popularity = %d, want 9999 (higher must win)", popularity)
}
if duration != 210000 {
t.Errorf("duration = %d, want 210000 (artifact carries none)", duration)
}
if inLibrary != 1 {
t.Error("in_library was cleared; the artifact must not touch personal columns")
}
if discogFetched != 1 {
t.Error("discog_fetched was cleared by the merge")
}
}
// The batch walk is the part most likely to drop or duplicate rows, so
// it is exercised across many batch boundaries rather than one.
func TestImportCoreArtifactBatchWalkCoversAllRows(t *testing.T) {
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, testLogger())
// Shrink the batch rather than growing the fixture: what matters is
// crossing several boundaries, including a short final one.
original := artifactMergeBatch
artifactMergeBatch = 100
t.Cleanup(func() { artifactMergeBatch = original })
const total = 337
rows := make([]artifactRow, 0, total)
for i := range total {
rows = append(rows, artifactRow{
entityType: "recording",
mbid: syntheticMBID(i),
title: "Song",
artistName: "Artist",
artistMBID: artA,
popularity: i,
})
}
path := writeTestArtifact(t, validMeta(), rows)
if err := si.importCoreArtifact(context.Background(), path); err != nil {
t.Fatalf("importCoreArtifact: %v", err)
}
var got int
if err := db.QueryRowWriter(
"SELECT COUNT(*) FROM explore_index",
).Scan(&got); err != nil {
t.Fatalf("count rows: %v", err)
}
if got != total {
t.Errorf("merged %d rows, want %d", got, total)
}
}
func TestImportCoreArtifactRejectsBadArtifacts(t *testing.T) {
tests := []struct {
name string
meta map[string]string
rows []artifactRow
want error
}{
{
name: "version mismatch",
meta: map[string]string{"artifact_version": "99"},
rows: []artifactRow{{"artist", artA, "A", "A", artA, 1}},
want: ErrArtifactVersion,
},
{
name: "no version",
meta: map[string]string{},
rows: []artifactRow{{"artist", artA, "A", "A", artA, 1}},
want: ErrArtifactVersion,
},
{
name: "empty catalog",
meta: validMeta(),
rows: nil,
want: ErrArtifactUnusable,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, testLogger())
path := writeTestArtifact(t, tt.meta, tt.rows)
err := si.importCoreArtifact(context.Background(), path)
if err == nil {
t.Fatal("expected rejection, got nil")
}
if !strings.Contains(err.Error(), tt.want.Error()) {
t.Errorf("error = %v, want it to wrap %v", err, tt.want)
}
// A rejected artifact must not leave the index claiming it
// has a catalog, or the real build would never run.
if si.hasMeta(dumpImportDoneKey) {
t.Error("rejected artifact still stamped dump_import_done")
}
})
}
}
func TestInspectArtifactRejectsNonArtifactFile(t *testing.T) {
path := filepath.Join(t.TempDir(), "garbage.db")
if err := os.WriteFile(path, []byte("not a database"), 0o644); err != nil {
t.Fatalf("write file: %v", err)
}
if _, err := inspectArtifact(path); err == nil {
t.Error("expected rejection of a non-artifact file")
}
}
// syntheticMBID produces distinct, well-formed MBIDs for bulk fixtures.
func syntheticMBID(i int) string {
const hex = "0123456789abcdef"
buf := []byte("00000000-0000-0000-0000-000000000000")
for pos := len(buf) - 1; pos >= 0 && i > 0; pos-- {
if buf[pos] == '-' {
continue
}
buf[pos] = hex[i%16]
i /= 16
}
return string(buf)
}
// resolveArtistName falls back to the MBID when no name is available.
// That value must never reach the index: the upsert no longer defends
// against it, so the writer is the only thing standing in the way.
func TestAddFromCacheNeverStoresMBIDAsName(t *testing.T) {
db := database.NewTestDB(t)
si := NewSearchIndex(db, nil, nil, testLogger())
si.AddFromCache(artA, artA, []MBReleaseGroup{
{MBID: rgA, Title: "Album A", PrimaryType: "Album"},
})
var artistRows int
if err := db.QueryRowWriter(
`SELECT COUNT(*) FROM explore_index
WHERE entity_type = 'artist' AND title = mbid`,
).Scan(&artistRows); err != nil {
t.Fatalf("count artist rows: %v", err)
}
if artistRows != 0 {
t.Errorf("%d artist rows stored the MBID as their title", artistRows)
}
var artistName string
if err := db.QueryRowWriter(
`SELECT artist_name FROM explore_index WHERE mbid = ?`, rgA,
).Scan(&artistName); err != nil {
t.Fatalf("read release group: %v", err)
}
if artistName == artA {
t.Error("release group stored the artist MBID as its artist_name")
}
// A real name arriving later must still win over the empty one.
si.AddFromCache("Real Artist", artA, []MBReleaseGroup{
{MBID: rgA, Title: "Album A", PrimaryType: "Album"},
})
if err := db.QueryRowWriter(
`SELECT artist_name FROM explore_index WHERE mbid = ?`, rgA,
).Scan(&artistName); err != nil {
t.Fatalf("re-read release group: %v", err)
}
if artistName != "Real Artist" {
t.Errorf("artist_name = %q, want it filled in once known", artistName)
}
}
// The importer names the artifact's columns independently of the
// exporter that writes them. If the two lists drift, the merge either
// fails outright or silently shifts values into the wrong columns, so
// they are compared directly against cmd/indexexport's source.
func TestArtifactColumnsMatchExporter(t *testing.T) {
src, err := os.ReadFile("../../cmd/indexexport/main.go")
if err != nil {
t.Fatalf("read exporter: %v", err)
}
const marker = "const catalogColumns = `"
i := strings.Index(string(src), marker)
if i < 0 {
t.Fatalf("catalogColumns not found in cmd/indexexport/main.go")
}
rest := string(src)[i+len(marker):]
j := strings.Index(rest, "`")
if j < 0 {
t.Fatal("unterminated catalogColumns literal")
}
normalise := func(s string) string {
out := make([]string, 0, 32)
for _, f := range strings.Split(s, ",") {
out = append(out, strings.Join(strings.Fields(f), ""))
}
return strings.Join(out, ",")
}
exporter := normalise(rest[:j])
importer := normalise(artifactCatalogColumns)
if exporter != importer {
t.Errorf("column lists have drifted:\n exporter: %s\n importer: %s",
exporter, importer)
}
}