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
390 lines
12 KiB
Go
390 lines
12 KiB
Go
package explore
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import (
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"context"
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"database/sql"
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"errors"
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"fmt"
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"os"
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"strconv"
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"time"
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_ "modernc.org/sqlite" // SQLite driver for reading the artifact file.
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"yellowjacket/backend/jobs"
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)
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// Import of the prebuilt "core" index artifact.
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//
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// The catalog half of the index is identical for every user, so deriving
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// it on each machine means every install streams ~89GB from
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// data.metabrainz.org — a server that caps a client at roughly 2MB/s, so
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// better than half a day of downloading to reach a result everyone else
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// already has. Instead CI runs that import once (cmd/indexbuild),
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// exports a subset (cmd/indexexport), and clients merge the resulting
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// artifact in seconds.
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//
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// The artifact is an ordinary SQLite database holding two tables:
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// explore_index with the global catalog columns only, and artifact_meta
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// describing what it is. It deliberately carries no FTS table and no
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// triggers — rows land in the client's own explore_index, whose AFTER
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// INSERT trigger populates the search index as a side effect.
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//
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// Merging goes through the same ON CONFLICT rules as every other index
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// write (upsertIndexConflictSQL), so an artifact can be applied over an
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// existing index without clobbering better data: non-empty values win
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// over empty, higher listen counts win over lower, and the personal
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// columns the artifact does not carry are left untouched.
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const (
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// coreArtifactVersionKey records which artifact version was merged,
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// so a client can tell whether it already has one and skip re-import.
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coreArtifactVersionKey = "core_artifact_version"
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// supportedArtifactVersion is the artifact schema this build knows how
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// to read. The exporter stamps it into artifact_meta; a mismatch is
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// refused rather than guessed at, because an artifact written against
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// a different explore_index schema would merge wrong columns.
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supportedArtifactVersion = "1"
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)
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// artifactMergeBatch bounds how many rows are merged per transaction.
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// Large enough that per-transaction overhead disappears, small enough
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// that a cancelled import doesn't roll back minutes of work. A var so
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// tests can shrink it and still cross several batch boundaries.
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var artifactMergeBatch = 50_000
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var (
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// ErrArtifactUnusable means the file is not a core index artifact this
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// build can merge. Callers treat it as "fall back to a normal build"
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// rather than as a fatal error.
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ErrArtifactUnusable = errors.New("core index artifact unusable")
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// ErrArtifactVersion is a version mismatch between the artifact and
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// this build.
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ErrArtifactVersion = errors.New("core index artifact version mismatch")
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)
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// artifactInfo is what the artifact declares about itself.
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type artifactInfo struct {
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version string
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// builtAt is when the source index finished importing, not when the
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// artifact was exported.
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builtAt string
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// listensSeries is the incremental listens dump the artifact's
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// popularity numbers are baselined on. Stamped into the client's
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// index so RefreshListenCounts resumes from the right point instead
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// of reapplying deltas already folded in.
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listensSeries string
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rows int
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}
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// artifactCatalogColumns are the columns an artifact carries. It is the
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// global catalog only: the personal columns (in_library, is_similar,
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// local_*) describe one person's library and are recomputed locally by
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// PopulateLocalCrossReferences.
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//
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// Kept in sync with cmd/indexexport's catalogColumns by
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// TestArtifactColumnsMatchExporter.
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const artifactCatalogColumns = `entity_type, mbid, title, artist_name, artist_mbid,
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aliases, popularity, listener_count, duration, caa_release_mbid,
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release_name, primary_type, secondary_types, release_date,
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artist_type, country, disambiguation, sort_name, discog_fetched`
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// inspectArtifact opens the artifact read-only and reports what it
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// declares, without touching the live index. Validation happens here so
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// a bad download is rejected before anything is attached.
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func inspectArtifact(path string) (artifactInfo, error) {
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var info artifactInfo
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db, err := sql.Open("sqlite", "file:"+path+"?mode=ro")
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if err != nil {
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return info, fmt.Errorf("%w: open: %w", ErrArtifactUnusable, err)
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}
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defer func() { _ = db.Close() }()
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meta := map[string]string{}
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rows, err := db.Query("SELECT key, value FROM artifact_meta")
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if err != nil {
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return info, fmt.Errorf("%w: read artifact_meta: %w", ErrArtifactUnusable, err)
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}
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defer func() { _ = rows.Close() }()
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for rows.Next() {
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var k, v string
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if err := rows.Scan(&k, &v); err != nil {
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return info, fmt.Errorf("%w: scan artifact_meta: %w", ErrArtifactUnusable, err)
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}
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meta[k] = v
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}
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if err := rows.Err(); err != nil {
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return info, fmt.Errorf("%w: read artifact_meta: %w", ErrArtifactUnusable, err)
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}
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info.version = meta["artifact_version"]
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info.builtAt = meta["built_at"]
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info.listensSeries = meta["listens_applied_series"]
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if info.version != supportedArtifactVersion {
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return info, fmt.Errorf("%w: artifact is version %q, this build reads %q",
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ErrArtifactVersion, info.version, supportedArtifactVersion)
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}
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// A structurally valid but empty artifact would merge cleanly and
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// leave Explore just as empty as before, while stamping the index as
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// imported. Refuse it.
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if err := db.QueryRow(
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"SELECT COUNT(*) FROM explore_index",
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).Scan(&info.rows); err != nil {
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return info, fmt.Errorf("%w: count rows: %w", ErrArtifactUnusable, err)
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}
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if info.rows == 0 {
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return info, fmt.Errorf("%w: artifact contains no rows", ErrArtifactUnusable)
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}
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return info, nil
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}
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// importCoreArtifact merges a validated artifact at path into the live
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// index. It is idempotent — the merge is an upsert keyed by MBID, so a
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// re-run over an already-imported artifact is a no-op in effect.
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//
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// The caller keeps ownership of the file; nothing here deletes it.
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func (si *SearchIndex) importCoreArtifact(ctx context.Context, path string) error {
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info, err := inspectArtifact(path)
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if err != nil {
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return err
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}
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si.logger.Info("core artifact: merging",
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"rows", info.rows,
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"builtAt", info.builtAt,
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"listensSeries", info.listensSeries,
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)
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si.logIndexJob(jobs.LevelInfo, fmt.Sprintf(
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"Merging prebuilt catalog (%s rows, built %s)",
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formatCount(info.rows), info.builtAt,
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))
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// ATTACH cannot run inside a transaction, and it binds to a single
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// connection — which is why every statement below goes through the
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// writer (SetMaxOpenConns(1)). Reads must not use db.QueryContext:
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// that routes to the separate read pool, where "core" does not exist.
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if _, err := si.db.ExecContext(`ATTACH DATABASE ? AS core`, path); err != nil {
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return fmt.Errorf("%w: attach: %w", ErrArtifactUnusable, err)
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}
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defer func() {
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if _, err := si.db.ExecContext(`DETACH DATABASE core`); err != nil {
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si.logger.Warn("core artifact: detach failed", "error", err)
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}
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}()
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// Per-row FTS maintenance across a million inserts costs far more
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// than the inserts themselves (~31 rows/s against ~4,700), so the
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// search index is rebuilt once at the end instead.
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ftsSuspended := true
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if err := si.db.SuspendExploreIndexFTS(); err != nil {
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si.logger.Warn("core artifact: could not suspend FTS sync", "error", err)
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ftsSuspended = false
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}
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merged, mergeErr := si.mergeArtifactRows(ctx, info.rows)
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if ftsSuspended {
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start := time.Now()
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if err := si.db.ResumeExploreIndexFTS(); err != nil {
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// Leaving search unindexed is worse than a slow import: this
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// needs a rebuild to recover, so it is loud.
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si.logger.Error("core artifact: FTS rebuild failed — search index is stale",
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"error", err,
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)
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} else {
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si.logger.Info("core artifact: FTS index rebuilt",
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"elapsed", time.Since(start).Round(time.Millisecond),
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)
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}
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}
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if mergeErr != nil {
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return mergeErr
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}
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si.stampArtifactMeta(info)
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si.analyzeIndex()
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si.logger.Info("core artifact: merge complete", "rows", merged)
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si.logIndexJob(jobs.LevelInfo, fmt.Sprintf(
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"Prebuilt catalog merged (%s rows)", formatCount(merged),
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))
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si.MarkReadyIfPopulated()
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si.refreshStatusCounts()
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return nil
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}
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// analyzeIndex refreshes the query planner's table statistics.
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//
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// It runs here rather than at schema creation because an empty database
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// has nothing to measure: the numbers that matter only exist once the
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// catalog has been merged. Without them the planner mis-estimates the
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// partial expression indexes on explore_index and falls back to scanning
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// a million rows for queries that should seek.
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func (si *SearchIndex) analyzeIndex() {
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start := time.Now()
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if _, err := si.db.ExecContext("ANALYZE"); err != nil {
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// Only a performance loss, so it must not fail the import.
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si.logger.Warn("core artifact: ANALYZE failed", "error", err)
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return
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}
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si.logger.Info("core artifact: query planner statistics refreshed",
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"elapsed", time.Since(start).Round(time.Millisecond),
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)
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}
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// mergeArtifactRows copies the attached artifact into explore_index in
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// bounded batches, walking the artifact's MBID primary key so each batch
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// is an index range scan and a cancelled import leaves committed work
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// behind rather than rolling it all back.
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func (si *SearchIndex) mergeArtifactRows(ctx context.Context, total int) (int, error) {
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insertSQL := `
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INSERT INTO explore_index (` + artifactCatalogColumns + `)
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SELECT ` + artifactCatalogColumns + `
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FROM core.explore_index
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WHERE mbid > ?` + upsertIndexConflictSQL
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// The final batch has no upper bound, so the range predicate is
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// appended only while one exists.
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insertRangeSQL := `
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INSERT INTO explore_index (` + artifactCatalogColumns + `)
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SELECT ` + artifactCatalogColumns + `
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FROM core.explore_index
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WHERE mbid > ? AND mbid <= ?` + upsertIndexConflictSQL
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var (
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cursor string
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merged int
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)
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for {
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if err := ctx.Err(); err != nil {
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return merged, err
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}
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upper, hasUpper, err := si.artifactBatchBound(cursor)
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if err != nil {
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return merged, err
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}
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var res sql.Result
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if hasUpper {
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res, err = si.db.ExecContext(insertRangeSQL, cursor, upper)
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} else {
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res, err = si.db.ExecContext(insertSQL, cursor)
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}
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if err != nil {
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return merged, fmt.Errorf("%w: merge batch: %w", ErrArtifactUnusable, err)
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}
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n, err := res.RowsAffected()
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if err != nil {
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return merged, fmt.Errorf("%w: merge batch rows: %w", ErrArtifactUnusable, err)
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}
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merged += int(n)
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si.setTierDetail(
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artifactStageNames[artifactStageMerge], "running", merged, total,
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fmt.Sprintf("%s of %s rows", formatCount(merged), formatCount(total)),
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)
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if !hasUpper {
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return merged, nil
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}
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cursor = upper
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}
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}
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// artifactBatchBound returns the MBID that ends the next batch, and
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// whether one exists — no bound means the remainder is the last batch.
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func (si *SearchIndex) artifactBatchBound(cursor string) (string, bool, error) {
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var bound string
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err := si.db.QueryRowWriter(
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`SELECT mbid FROM core.explore_index
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WHERE mbid > ? ORDER BY mbid LIMIT 1 OFFSET ?`,
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cursor, artifactMergeBatch-1,
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).Scan(&bound)
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if errors.Is(err, sql.ErrNoRows) {
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return "", false, nil
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}
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if err != nil {
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return "", false, fmt.Errorf("%w: batch bound: %w", ErrArtifactUnusable, err)
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}
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return bound, true, nil
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}
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// stampArtifactMeta records what the merge established: the catalog half
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// is populated, and popularity is baselined on the artifact's listens
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// series so the incremental refresh resumes from there.
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func (si *SearchIndex) stampArtifactMeta(info artifactInfo) {
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si.setMeta(coreArtifactVersionKey, info.version)
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// The catalog is present, so nothing should trigger a full dump
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// import on top of the artifact it was meant to replace.
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si.setMeta(dumpImportDoneKey, time.Now().UTC().Format(time.RFC3339))
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// Without a baseline series RefreshListenCounts refuses to run at
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// all, so an artifact exported before that key existed leaves the
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// index permanently frozen at its shipped popularity. Better to say
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// so than to fail silently.
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if info.listensSeries == "" {
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si.logger.Warn(
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"core artifact: no listens series recorded — " +
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"popularity refresh will not run until the next full import",
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)
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return
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}
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if _, err := strconv.Atoi(info.listensSeries); err != nil {
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si.logger.Warn("core artifact: unparseable listens series",
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"value", info.listensSeries,
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)
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return
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}
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si.setMeta(listensAppliedSeriesKey, info.listensSeries)
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}
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// removeArtifactFile deletes a merged artifact. Best-effort: a leftover
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// file costs disk, not correctness.
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func (si *SearchIndex) removeArtifactFile(path string) {
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if err := os.Remove(path); err != nil && !os.IsNotExist(err) {
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si.logger.Warn("core artifact: cleanup failed", "path", path, "error", err)
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}
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}
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