Files
yellowjacket/cmd/indexexport/main.go

450 lines
14 KiB
Go

// Command indexexport turns a fully built explore index into the
// compact "core" artifact that ships to users.
//
// The full dump-built index is far too large to distribute (~900MB by
// current budget estimates). The core artifact keeps the most-listened
// artists and their discography slice — enough for Explore to be useful
// on a fresh install — and leaves the long tail to the existing lazy
// per-artist fetch paths.
//
// The artifact deliberately contains no FTS table. The importing client
// inserts these rows into its own explore_index, whose AFTER INSERT
// trigger populates explore_index_fts as a side effect, so shipping a
// search index would be redundant weight.
//
// Usage:
//
// YJ_HOME=/var/cache/yellowjacket-index indexexport -o core-index.db
package main
import (
"database/sql"
"errors"
"flag"
"fmt"
"os"
"path/filepath"
"strconv"
"strings"
"time"
_ "modernc.org/sqlite"
"yellowjacket/backend/system"
)
// Columns copied into the artifact: the global catalog only.
//
// Deliberately excluded are the per-user columns — in_library,
// is_similar, local_artist_id, local_release_group_id,
// local_recording_id — which describe one person's library and are
// recomputed locally by PopulateLocalCrossReferences after import.
const catalogColumns = `entity_type, mbid, title, artist_name, artist_mbid,
aliases, popularity, listener_count, duration, caa_release_mbid,
release_name, primary_type, secondary_types, release_date, total_tracks,
artist_type, country, disambiguation, sort_name, discog_fetched`
// sourceColumns is catalogColumns as read *from* the built index,
// which is not always shaped like the one this binary was compiled
// against.
//
// The index job's /cache volume is a real YJ_HOME that survives
// between runs and holds ~205 GB nobody can re-download casually, so
// its explore_index is classified Cache and is deliberately **not**
// dropped and recreated by cmd/indexbuild's schema repair. A column
// added to the schema after that database was built is therefore
// absent from it, and selecting it fails the whole export with
// "no such column: total_tracks" -- which is what happened the first
// time the job ran after the completeness work.
//
// So the source list is asked for rather than assumed, exactly as
// artifactHasTotals does on the importing side. Zero is what the
// column means by "the catalog does not say", and the app already
// renders that as unknown rather than as incomplete.
func sourceColumns(db *sql.DB) string {
var n int
err := db.QueryRow(
`SELECT COUNT(*) FROM pragma_table_info('explore_index', 'main')
WHERE name = 'total_tracks'`,
).Scan(&n)
if err == nil && n > 0 {
return catalogColumns
}
fmt.Println(
" note: this index predates total_tracks; exporting 0 for it",
)
return strings.Replace(catalogColumns, "total_tracks", "0", 1)
}
var errNoHome = errors.New(
"YJ_HOME must be set to the directory holding the built index",
)
var errEmptyIndex = errors.New(
"source index has no rows — run indexbuild to completion first",
)
func main() {
out := flag.String("o", "core-index.db", "output artifact path")
artists := flag.Int("artists", 50_000,
"number of top artists (by listen count) to include")
perArtistRGs := flag.Int("rgs-per-artist", 15,
"max release groups per included artist")
perArtistRecs := flag.Int("recs-per-artist", 30,
"max recordings per included artist")
flag.Parse()
if err := run(*out, *artists, *perArtistRGs, *perArtistRecs); err != nil {
fmt.Fprintln(os.Stderr, "indexexport:", err)
os.Exit(1)
}
}
func run(out string, artists, perArtistRGs, perArtistRecs int) error {
if os.Getenv("YJ_HOME") == "" {
return errNoHome
}
dataDir, err := system.GetUserDataDirPath()
if err != nil {
return fmt.Errorf("resolve data dir: %w", err)
}
srcPath := filepath.Join(dataDir, "yj.db")
// Read-only so an export can never disturb a build that is still
// running against the same working directory.
db, err := sql.Open("sqlite",
"file:"+srcPath+"?_pragma=busy_timeout(10000)&mode=ro")
if err != nil {
return fmt.Errorf("open source index: %w", err)
}
defer func() { _ = db.Close() }()
var srcRows int
if err := db.QueryRow(
"SELECT COUNT(*) FROM explore_index",
).Scan(&srcRows); err != nil {
return fmt.Errorf("count source rows: %w", err)
}
if srcRows == 0 {
return errEmptyIndex
}
fmt.Printf("source: %s (%d rows)\n", srcPath, srcRows)
if err := os.Remove(out); err != nil && !os.IsNotExist(err) {
return fmt.Errorf("clear output: %w", err)
}
if _, err := db.Exec(`ATTACH DATABASE ? AS core`, out); err != nil {
return fmt.Errorf("attach output: %w", err)
}
if err := createSchema(db); err != nil {
return err
}
if err := copyRows(db, artists, perArtistRGs, perArtistRecs); err != nil {
return err
}
if err := stampMeta(db, srcRows); err != nil {
return err
}
// DETACH before VACUUM: sqlite cannot vacuum an attached database.
if _, err := db.Exec(`DETACH DATABASE core`); err != nil {
return fmt.Errorf("detach output: %w", err)
}
if err := vacuum(out); err != nil {
return err
}
return report(out)
}
// createSchema builds the artifact's tables. No FTS and no triggers —
// the importing client's own trigger rebuilds its FTS on insert.
func createSchema(db *sql.DB) error {
stmts := []string{
// Column types mirror the app's own explore_index, because the
// export is a straight copy: MBIDs as 16 raw bytes, entity
// types as codes. An importer that meets the older text form
// converts it (artifactSelectColumns), so this is a size change
// and not a compatibility break.
`CREATE TABLE core.explore_index (
entity_type INTEGER NOT NULL,
mbid BLOB NOT NULL,
title TEXT NOT NULL,
artist_name TEXT NOT NULL,
artist_mbid BLOB 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 BLOB NOT NULL DEFAULT x'',
release_name TEXT NOT NULL DEFAULT '',
primary_type TEXT NOT NULL DEFAULT '',
secondary_types TEXT NOT NULL DEFAULT '',
release_date TEXT NOT NULL DEFAULT '',
total_tracks INTEGER NOT NULL DEFAULT 0,
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 core.artifact_meta (
key TEXT PRIMARY KEY,
value TEXT NOT NULL
)`,
// Multi-artist credits. Shipped as their own tables rather than
// as an explore_index column because a credit is a variable
// number of ordered parts, and because credits are *shared* --
// an album's tracks by one artist reference one credit, which is
// what keeps this to a few hundred thousand rows.
//
// An importer that predates these reads an artifact without
// them; artifactHasCredits is what asks.
`CREATE TABLE core.artist_credit_part (
credit_id INTEGER NOT NULL,
position INTEGER NOT NULL,
artist_mbid BLOB NOT NULL,
credited_name TEXT NOT NULL,
join_phrase TEXT NOT NULL DEFAULT '',
PRIMARY KEY (credit_id, position)
) WITHOUT ROWID`,
`CREATE TABLE core.artist_credit_ref (
mbid BLOB NOT NULL PRIMARY KEY,
credit_id INTEGER NOT NULL
) WITHOUT ROWID`,
}
for _, stmt := range stmts {
if _, err := db.Exec(stmt); err != nil {
return fmt.Errorf("create artifact schema: %w", err)
}
}
return nil
}
// copyRows selects the core subset: the top artists by listen count,
// then a bounded slice of each one's release groups and recordings.
//
// The per-artist window mirrors the S2 coverage already in
// dumpcatalog.go — a flat global top-N would give a handful of
// superstars everything and everyone else nothing.
func copyRows(db *sql.DB, artists, perArtistRGs, perArtistRecs int) error {
// The destination is created by this binary and always has every
// column; only the source may be older.
srcColumns := sourceColumns(db)
if _, err := db.Exec(`
CREATE TEMP TABLE core_artists AS
SELECT mbid FROM main.explore_index
WHERE entity_type = 1 /* artist */
ORDER BY popularity DESC
LIMIT ?`, artists,
); err != nil {
return fmt.Errorf("select core artists: %w", err)
}
copied, err := insertSelect(db, `
INSERT INTO core.explore_index (`+catalogColumns+`)
SELECT `+srcColumns+`
FROM main.explore_index
WHERE entity_type = 1 /* artist */
AND mbid IN (SELECT mbid FROM core_artists)`)
if err != nil {
return err
}
fmt.Printf(" artists: %d\n", copied)
// The entity codes are the catalog's storage form; see
// backend/explore/mbid.go. The exporter copies the local index's
// encoding through unchanged, so the artifact carries it too - and
// the importer accepts either, so an artifact built before this
// still imports.
for _, sel := range []struct {
label string
entity int
limit int
}{
{"release groups", 2 /* release_group */, perArtistRGs},
{"recordings", 3 /* recording */, perArtistRecs},
} {
// The window is over artist_mbid so each artist contributes at
// most `limit` rows, ranked by their own listen counts.
n, err := insertSelect(db, `
INSERT INTO core.explore_index (`+catalogColumns+`)
SELECT `+srcColumns+` FROM (
SELECT *, ROW_NUMBER() OVER (
PARTITION BY artist_mbid ORDER BY popularity DESC
) AS rn
FROM main.explore_index
WHERE entity_type = ?
AND artist_mbid IN (SELECT mbid FROM core_artists)
) WHERE rn <= ?`, sel.entity, sel.limit)
if err != nil {
return err
}
fmt.Printf(" %-15s %d\n", sel.label+":", n)
}
return copyCredits(db)
}
// copyCredits ships the credit decomposition for the entities that made
// it into the artifact, and only those.
//
// The refs go first and the parts follow *from* the refs, so a credit is
// carried only if something in the artifact points at it. The source
// index holds credits for every catalog entity, while the artifact is a
// windowed subset -- copying all of them would carry a large table most
// of which nothing in the artifact can reach.
//
// A source index built before the credit pass simply has no rows here,
// which is not an error: the artifact then carries the tables empty, and
// every credit falls back to its single artist exactly as before.
func copyCredits(db *sql.DB) error {
// Asked, not assumed. A source index built before the credit pass
// has no such table, and "no such table" would fail an export whose
// catalog is otherwise complete.
for _, table := range []string{"artist_credit_ref", "artist_credit_part"} {
var n int
if err := db.QueryRow(
`SELECT COUNT(*) FROM main.sqlite_master
WHERE type = 'table' AND name = ?`, table,
).Scan(&n); err != nil {
return fmt.Errorf("probe %s: %w", table, err)
}
if n == 0 {
fmt.Printf(" %-15s none in source\n", "credits:")
return nil
}
}
refs, err := insertSelect(db, `
INSERT INTO core.artist_credit_ref (mbid, credit_id)
SELECT r.mbid, r.credit_id
FROM main.artist_credit_ref r
WHERE r.mbid IN (SELECT mbid FROM core.explore_index)`)
if err != nil {
return err
}
parts, err := insertSelect(db, `
INSERT INTO core.artist_credit_part
(credit_id, position, artist_mbid, credited_name, join_phrase)
SELECT p.credit_id, p.position, p.artist_mbid, p.credited_name, p.join_phrase
FROM main.artist_credit_part p
WHERE p.credit_id IN (SELECT credit_id FROM core.artist_credit_ref)`)
if err != nil {
return err
}
fmt.Printf(" %-15s %d refs, %d parts\n", "credits:", refs, parts)
return nil
}
func insertSelect(db *sql.DB, query string, args ...any) (int64, error) {
res, err := db.Exec(query, args...)
if err != nil {
return 0, fmt.Errorf("copy rows: %w", err)
}
n, err := res.RowsAffected()
if err != nil {
return 0, fmt.Errorf("rows affected: %w", err)
}
return n, nil
}
// stampMeta records what the importing client needs to know: that the
// catalog half is already populated, and which incremental listens
// series the popularity numbers are baselined on, so the incremental
// refresh resumes from the right point instead of reapplying deltas.
func stampMeta(db *sql.DB, srcRows int) error {
series := lookupMeta(db, "listens_applied_series")
built := lookupMeta(db, "dump_import_done")
if built == "" {
built = time.Now().UTC().Format(time.RFC3339)
}
entries := map[string]string{
"artifact_version": "1",
"built_at": built,
"source_rows": strconv.Itoa(srcRows),
"listens_applied_series": series,
}
for k, v := range entries {
if _, err := db.Exec(
`INSERT OR REPLACE INTO core.artifact_meta (key, value) VALUES (?, ?)`,
k, v,
); err != nil {
return fmt.Errorf("stamp %s: %w", k, err)
}
}
return nil
}
func lookupMeta(db *sql.DB, key string) string {
var value string
row := db.QueryRow(
`SELECT value FROM main.explore_index_meta WHERE key = ?`, key)
if err := row.Scan(&value); err != nil {
return ""
}
return value
}
func vacuum(path string) error {
db, err := sql.Open("sqlite", "file:"+path)
if err != nil {
return fmt.Errorf("reopen artifact: %w", err)
}
defer func() { _ = db.Close() }()
if _, err := db.Exec("VACUUM"); err != nil {
return fmt.Errorf("vacuum artifact: %w", err)
}
return nil
}
func report(path string) error {
fi, err := os.Stat(path)
if err != nil {
return fmt.Errorf("stat artifact: %w", err)
}
fmt.Printf("\nartifact: %s (%.1f MB)\n",
path, float64(fi.Size())/(1<<20))
fmt.Println("compress with: zstd -19 -T0", path)
return nil
}