2 Commits
Author SHA1 Message Date
Joren 80bfbe0ecb feat: infer beatport release artist 2026-07-11 16:40:04 +02:00
Joren 3413de1daa feat: format multi-artist credits 2026-07-11 04:44:54 +02:00
8 changed files with 470 additions and 33 deletions
+20
View File
@@ -1358,6 +1358,7 @@ func buildTagMetadata(trackMeta map[string]any, title, source, trackID string, o
if artist == "" {
artist = jsonutil.NestedString(trackMeta, "artist", "name")
}
artistNames := stringSliceFromAny(trackMeta["artist_names"])
albumArtist := jsonutil.NestedString(trackMeta, "album", "artist", "name")
if albumArtist == "" {
albumArtist = artist
@@ -1469,6 +1470,7 @@ func buildTagMetadata(trackMeta map[string]any, title, source, trackID string, o
Title: title,
Album: album,
Artist: artist,
Artists: artistNames,
AlbumArtist: albumArtist,
OmitDiscTags: opts.forPlaylist,
TrackNumber: trackNumber,
@@ -1494,6 +1496,24 @@ func buildTagMetadata(trackMeta map[string]any, title, source, trackID string, o
}
}
func stringSliceFromAny(v any) []string {
items, ok := v.([]string)
if ok {
return append([]string(nil), items...)
}
rawItems, ok := v.([]any)
if !ok {
return nil
}
out := make([]string, 0, len(rawItems))
for _, raw := range rawItems {
if s := strings.TrimSpace(jsonutil.StringFromAny(raw)); s != "" {
out = append(out, s)
}
}
return out
}
func normalizeInitialKey(in string) string {
s := strings.TrimSpace(in)
if s == "" {
+16
View File
@@ -877,6 +877,22 @@ func TestBuildTagMetadataInitialKey(t *testing.T) {
}
}
func TestBuildTagMetadataArtistList(t *testing.T) {
meta := map[string]any{
"artist_names": []string{"Lost Frequencies", "Calum Scott", "Kungs"},
"performer": map[string]any{"name": "Lost Frequencies, Calum Scott & Kungs"},
"album": map[string]any{"title": "Album"},
}
tags := buildTagMetadata(meta, "Song", "beatport", "42", ripTrackOptions{})
if tags.Artist != "Lost Frequencies, Calum Scott & Kungs" {
t.Fatalf("artist=%q", tags.Artist)
}
if got := strings.Join(tags.Artists, ";"); got != "Lost Frequencies;Calum Scott;Kungs" {
t.Fatalf("artists=%q", got)
}
}
func TestNormalizeInitialKey(t *testing.T) {
tests := map[string]string{
"C Major": "C",
+149
View File
@@ -1,6 +1,7 @@
package tag
import (
"encoding/binary"
"fmt"
"os"
"os/exec"
@@ -13,6 +14,7 @@ type Metadata struct {
Title string
Album string
Artist string
Artists []string
AlbumArtist string
OmitDiscTags bool
TrackNumber int
@@ -71,6 +73,9 @@ func (t *Tagger) TagFLAC(path string, meta Metadata, coverPath string) error {
_ = os.Remove(tmpPath)
return err
}
if err = applyMultiValueFLACTags(path, meta); err != nil {
return err
}
return nil
}
@@ -195,6 +200,150 @@ func toTags(meta Metadata) map[string]string {
return tags
}
func applyMultiValueFLACTags(path string, meta Metadata) error {
if strings.ToLower(strings.TrimPrefix(filepath.Ext(path), ".")) != "flac" || len(meta.Artists) == 0 {
return nil
}
st, err := os.Stat(path)
if err != nil {
return err
}
data, err := os.ReadFile(path)
if err != nil {
return err
}
updated, err := replaceFLACVorbisComments(data, "ARTISTS", meta.Artists)
if err != nil {
return err
}
if updated == nil {
return nil
}
return os.WriteFile(path, updated, st.Mode())
}
type flacMetadataBlock struct {
isLast bool
blockType byte
data []byte
}
func replaceFLACVorbisComments(data []byte, key string, values []string) ([]byte, error) {
if len(data) < 4 || string(data[:4]) != "fLaC" {
return nil, fmt.Errorf("not a FLAC file")
}
blocks := []flacMetadataBlock{}
pos := 4
vorbisIndex := -1
for {
if pos+4 > len(data) {
return nil, fmt.Errorf("truncated FLAC metadata header")
}
header := data[pos]
blockType := header & 0x7f
length := int(data[pos+1])<<16 | int(data[pos+2])<<8 | int(data[pos+3])
pos += 4
if pos+length > len(data) {
return nil, fmt.Errorf("truncated FLAC metadata block")
}
if blockType == 4 {
vorbisIndex = len(blocks)
}
blocks = append(blocks, flacMetadataBlock{isLast: header&0x80 != 0, blockType: blockType, data: data[pos : pos+length]})
pos += length
if header&0x80 != 0 {
break
}
}
if vorbisIndex < 0 {
return nil, nil
}
commentBlock, err := replaceVorbisCommentValues(blocks[vorbisIndex].data, key, values)
if err != nil {
return nil, err
}
blocks[vorbisIndex].data = commentBlock
out := make([]byte, 0, len(data)+len(commentBlock)-len(blocks[vorbisIndex].data))
out = append(out, data[:4]...)
for _, block := range blocks {
if len(block.data) > 0xffffff {
return nil, fmt.Errorf("FLAC metadata block too large")
}
header := block.blockType
if block.isLast {
header |= 0x80
}
out = append(out, header, byte(len(block.data)>>16), byte(len(block.data)>>8), byte(len(block.data)))
out = append(out, block.data...)
}
out = append(out, data[pos:]...)
return out, nil
}
func replaceVorbisCommentValues(data []byte, key string, values []string) ([]byte, error) {
if len(data) < 8 {
return nil, fmt.Errorf("truncated Vorbis comment block")
}
pos := 0
vendorLength := int(binary.LittleEndian.Uint32(data[pos:]))
pos += 4
if pos+vendorLength+4 > len(data) {
return nil, fmt.Errorf("truncated Vorbis vendor string")
}
vendor := data[pos : pos+vendorLength]
pos += vendorLength
commentCount := int(binary.LittleEndian.Uint32(data[pos:]))
pos += 4
comments := make([][]byte, 0, commentCount+len(values))
for i := 0; i < commentCount; i++ {
if pos+4 > len(data) {
return nil, fmt.Errorf("truncated Vorbis comment length")
}
commentLength := int(binary.LittleEndian.Uint32(data[pos:]))
pos += 4
if pos+commentLength > len(data) {
return nil, fmt.Errorf("truncated Vorbis comment")
}
comment := data[pos : pos+commentLength]
pos += commentLength
if !vorbisCommentKeyEqual(comment, key) {
comments = append(comments, comment)
}
}
for _, value := range values {
value = strings.TrimSpace(value)
if value != "" {
comments = append(comments, []byte(key+"="+value))
}
}
out := make([]byte, 0, len(data))
out = appendUint32LE(out, uint32(len(vendor)))
out = append(out, vendor...)
out = appendUint32LE(out, uint32(len(comments)))
for _, comment := range comments {
out = appendUint32LE(out, uint32(len(comment)))
out = append(out, comment...)
}
return out, nil
}
func vorbisCommentKeyEqual(comment []byte, key string) bool {
idx := strings.IndexByte(string(comment), '=')
if idx < 0 {
return false
}
return strings.EqualFold(string(comment[:idx]), key)
}
func appendUint32LE(out []byte, v uint32) []byte {
return append(out, byte(v), byte(v>>8), byte(v>>16), byte(v>>24))
}
func normalizeCopyright(in string) string {
out := strings.ReplaceAll(in, "(c)", "©")
out = strings.ReplaceAll(out, "(C)", "©")
+97
View File
@@ -1,6 +1,7 @@
package tag
import (
"encoding/binary"
"os"
"path/filepath"
"testing"
@@ -64,6 +65,102 @@ func TestToTagsTotalsAndSourceFields(t *testing.T) {
}
}
func TestToTagsArtistList(t *testing.T) {
tags := toTags(Metadata{Artist: "A, B & C", Artists: []string{"A", "B", "C"}})
if tags["artist"] != "A, B & C" {
t.Fatalf("artist tags = %+v", tags)
}
if _, ok := tags["ARTISTS"]; ok {
t.Fatalf("ARTISTS should be written as repeated FLAC comments, got %+v", tags)
}
}
func TestReplaceVorbisCommentValuesWritesRepeatedTags(t *testing.T) {
block := vorbisCommentBlock("vendor", []string{
"ARTIST=A, B & C",
"ARTISTS=A;B;C",
"TITLE=Song",
})
updated, err := replaceVorbisCommentValues(block, "ARTISTS", []string{"A", "B", "C"})
if err != nil {
t.Fatalf("replaceVorbisCommentValues() error = %v", err)
}
comments := readVorbisComments(t, updated)
want := []string{"ARTIST=A, B & C", "TITLE=Song", "ARTISTS=A", "ARTISTS=B", "ARTISTS=C"}
if len(comments) != len(want) {
t.Fatalf("comments=%#v want %#v", comments, want)
}
for i := range want {
if comments[i] != want[i] {
t.Fatalf("comments=%#v want %#v", comments, want)
}
}
}
func TestReplaceFLACVorbisComments(t *testing.T) {
vorbis := vorbisCommentBlock("vendor", []string{"ARTISTS=A;B", "TITLE=Song"})
flac := append([]byte("fLaC"), flacBlockHeader(true, 4, len(vorbis))...)
flac = append(flac, vorbis...)
flac = append(flac, []byte("audio")...)
updated, err := replaceFLACVorbisComments(flac, "ARTISTS", []string{"A", "B"})
if err != nil {
t.Fatalf("replaceFLACVorbisComments() error = %v", err)
}
if string(updated[len(updated)-5:]) != "audio" {
t.Fatalf("audio payload not preserved")
}
length := int(updated[5])<<16 | int(updated[6])<<8 | int(updated[7])
comments := readVorbisComments(t, updated[8:8+length])
want := []string{"TITLE=Song", "ARTISTS=A", "ARTISTS=B"}
if len(comments) != len(want) {
t.Fatalf("comments=%#v want %#v", comments, want)
}
for i := range want {
if comments[i] != want[i] {
t.Fatalf("comments=%#v want %#v", comments, want)
}
}
}
func vorbisCommentBlock(vendor string, comments []string) []byte {
out := []byte{}
out = appendUint32LE(out, uint32(len(vendor)))
out = append(out, vendor...)
out = appendUint32LE(out, uint32(len(comments)))
for _, comment := range comments {
out = appendUint32LE(out, uint32(len(comment)))
out = append(out, comment...)
}
return out
}
func flacBlockHeader(last bool, blockType byte, length int) []byte {
header := blockType
if last {
header |= 0x80
}
return []byte{header, byte(length >> 16), byte(length >> 8), byte(length)}
}
func readVorbisComments(t *testing.T, block []byte) []string {
t.Helper()
pos := 0
vendorLength := int(binary.LittleEndian.Uint32(block[pos:]))
pos += 4 + vendorLength
count := int(binary.LittleEndian.Uint32(block[pos:]))
pos += 4
comments := make([]string, 0, count)
for i := 0; i < count; i++ {
length := int(binary.LittleEndian.Uint32(block[pos:]))
pos += 4
comments = append(comments, string(block[pos:pos+length]))
pos += length
}
return comments
}
func TestBuildFFmpegArgsWithCover(t *testing.T) {
tmp := t.TempDir()
cover := filepath.Join(tmp, "cover.jpg")
+91 -12
View File
@@ -480,14 +480,16 @@ func (c *Client) rawRequest(ctx context.Context, method, endpoint string, params
func (c *Client) normalizeRelease(raw map[string]any, tracks []any) map[string]any {
id := jsonutil.StringFromAny(raw["id"])
artist := c.releaseArtistName(raw["artists"])
artist := c.releaseArtistNameForTracks(raw["artists"], tracks)
trackRelease := cloneMap(raw)
trackRelease["album_artist_name"] = artist
items := make([]any, 0, len(tracks))
for _, entry := range tracks {
track, ok := entry.(map[string]any)
if !ok {
continue
}
track["release"] = raw
track["release"] = trackRelease
items = append(items, c.normalizeTrack(track))
}
return map[string]any{
@@ -507,9 +509,13 @@ func (c *Client) normalizeRelease(raw map[string]any, tracks []any) map[string]a
func (c *Client) normalizeTrack(raw map[string]any) map[string]any {
release := mapAny(raw["release"])
artistName := c.joinArtists(raw["artists"])
trackArtistNames := artistNames(raw["artists"])
artistName := displayArtistNames(trackArtistNames)
artistID := firstArtistID(raw["artists"])
albumArtist := c.releaseArtistName(release["artists"])
albumArtist := strings.TrimSpace(jsonutil.StringFromAny(release["album_artist_name"]))
if albumArtist == "" {
albumArtist = c.releaseArtistName(release["artists"])
}
if albumArtist == "" {
albumArtist = artistName
}
@@ -524,6 +530,7 @@ func (c *Client) normalizeTrack(raw map[string]any) map[string]any {
"version": jsonutil.StringFromAny(raw["mix_name"]),
"artist": map[string]any{"id": artistID, "name": artistName},
"performer": map[string]any{"id": artistID, "name": artistName},
"artist_names": trackArtistNames,
"album": map[string]any{"id": jsonutil.StringFromAny(release["id"]), "title": jsonutil.StringFromAny(release["name"]), "artist": map[string]any{"name": albumArtist}, "image": imageMap(release["image"]), "release_date_original": date},
"track_number": jsonutil.IntFromAny(raw["number"]),
"tracks_count": jsonutil.IntFromAny(release["track_count"]),
@@ -544,11 +551,12 @@ func (c *Client) normalizeTrack(raw map[string]any) map[string]any {
}
func (c *Client) normalizeTrackListItem(raw map[string]any) map[string]any {
names := artistNames(raw["artists"])
return map[string]any{
"id": jsonutil.StringFromAny(raw["id"]),
"title": jsonutil.StringFromAny(raw["name"]),
"version": jsonutil.StringFromAny(raw["mix_name"]),
"artist": map[string]any{"name": c.joinArtists(raw["artists"])},
"artist": map[string]any{"name": displayArtistNames(names)},
"album": map[string]any{"id": jsonutil.NestedString(raw, "release", "id"), "title": jsonutil.NestedString(raw, "release", "name")},
"track_number": jsonutil.IntFromAny(raw["number"]),
}
@@ -653,7 +661,7 @@ func audioProfile(quality, streamQuality string) (provider.AudioProfile, string)
}
}
func (c *Client) joinArtists(v any) string {
func artistNames(v any) []string {
items := sliceAny(v)
names := make([]string, 0, len(items))
for _, raw := range items {
@@ -665,7 +673,20 @@ func (c *Client) joinArtists(v any) string {
names = append(names, name)
}
}
return strings.Join(names, artistSeparator(c.cfg.Session.Metadata.ArtistSeparator))
return names
}
func displayArtistNames(names []string) string {
switch len(names) {
case 0:
return ""
case 1:
return names[0]
case 2:
return names[0] + " & " + names[1]
default:
return strings.Join(names[:len(names)-1], ", ") + " & " + names[len(names)-1]
}
}
func (c *Client) releaseArtistName(v any) string {
@@ -674,14 +695,72 @@ func (c *Client) releaseArtistName(v any) string {
if threshold >= 0 && len(items) > threshold {
return "Various Artists"
}
return c.joinArtists(v)
return displayArtistNames(artistNames(v))
}
func artistSeparator(separator string) string {
if separator == "" {
return "; "
func (c *Client) releaseArtistNameForTracks(releaseArtists any, tracks []any) string {
common := commonReleaseArtists(releaseArtists, tracks)
if len(common) > 0 {
return displayArtistNames(artistNames(common))
}
return separator
return c.releaseArtistName(releaseArtists)
}
func commonReleaseArtists(releaseArtists any, tracks []any) []any {
items := sliceAny(releaseArtists)
if len(items) == 0 || len(tracks) == 0 {
return nil
}
counts := map[string]int{}
trackCount := 0
for _, rawTrack := range tracks {
track, ok := rawTrack.(map[string]any)
if !ok {
continue
}
trackCount++
seen := map[string]bool{}
for _, rawArtist := range sliceAny(track["artists"]) {
if key := artistIdentity(rawArtist); key != "" {
seen[key] = true
}
}
for key := range seen {
counts[key]++
}
}
if trackCount == 0 {
return nil
}
common := make([]any, 0)
for _, rawArtist := range items {
if key := artistIdentity(rawArtist); key != "" && counts[key] == trackCount {
common = append(common, rawArtist)
}
}
return common
}
func artistIdentity(raw any) string {
m, ok := raw.(map[string]any)
if !ok {
return ""
}
if id := strings.TrimSpace(jsonutil.StringFromAny(m["id"])); id != "" {
return "id:" + id
}
if name := strings.TrimSpace(jsonutil.StringFromAny(m["name"])); name != "" {
return "name:" + strings.ToLower(name)
}
return ""
}
func cloneMap(in map[string]any) map[string]any {
out := make(map[string]any, len(in))
for k, v := range in {
out[k] = v
}
return out
}
func firstArtistID(v any) string {
+58 -16
View File
@@ -114,7 +114,7 @@ func TestAlbumMetadataCollapsesManyReleaseArtists(t *testing.T) {
writeJSON(t, w, map[string]any{
"id": 7,
"name": "Compilation",
"track_count": 1,
"track_count": 2,
"artists": []any{
map[string]any{"id": 1, "name": "A"},
map[string]any{"id": 2, "name": "B"},
@@ -125,12 +125,10 @@ func TestAlbumMetadataCollapsesManyReleaseArtists(t *testing.T) {
case "/catalog/releases/7/tracks/":
writeJSON(t, w, map[string]any{
"next": nil,
"results": []any{map[string]any{
"id": 42,
"name": "Track Name",
"number": 1,
"artists": []any{map[string]any{"id": 1, "name": "A"}},
}},
"results": []any{
map[string]any{"id": 42, "name": "Track A", "number": 1, "artists": []any{map[string]any{"id": 1, "name": "A"}}},
map[string]any{"id": 43, "name": "Track B", "number": 2, "artists": []any{map[string]any{"id": 2, "name": "B"}}},
},
})
default:
t.Fatalf("unexpected path %q", r.URL.Path)
@@ -154,6 +152,52 @@ func TestAlbumMetadataCollapsesManyReleaseArtists(t *testing.T) {
}
}
func TestAlbumMetadataUsesArtistPresentOnEveryTrack(t *testing.T) {
c, closeServer := newTestClient(t, http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Path {
case "/catalog/releases/7/":
writeJSON(t, w, map[string]any{
"id": 7,
"name": "Artist Album",
"track_count": 3,
"artists": []any{
map[string]any{"id": 1, "name": "Main"},
map[string]any{"id": 2, "name": "Guest A"},
map[string]any{"id": 3, "name": "Guest B"},
map[string]any{"id": 4, "name": "Guest C"},
},
})
case "/catalog/releases/7/tracks/":
writeJSON(t, w, map[string]any{
"next": nil,
"results": []any{
map[string]any{"id": 42, "name": "Track A", "number": 1, "artists": []any{map[string]any{"id": 1, "name": "Main"}, map[string]any{"id": 2, "name": "Guest A"}}},
map[string]any{"id": 43, "name": "Track B", "number": 2, "artists": []any{map[string]any{"id": 1, "name": "Main"}, map[string]any{"id": 3, "name": "Guest B"}}},
map[string]any{"id": 44, "name": "Track C", "number": 3, "artists": []any{map[string]any{"id": 1, "name": "Main"}, map[string]any{"id": 4, "name": "Guest C"}}},
},
})
default:
t.Fatalf("unexpected path %q", r.URL.Path)
}
}))
defer closeServer()
meta, err := c.GetMetadata(context.Background(), "7", "album")
if err != nil {
t.Fatalf("GetMetadata() error = %v", err)
}
artist := meta["artist"].(map[string]any)
if artist["name"] != "Main" {
t.Fatalf("album artist = %q, want Main", artist["name"])
}
track := meta["tracks"].(map[string]any)["items"].([]any)[0].(map[string]any)
album := track["album"].(map[string]any)
albumArtist := album["artist"].(map[string]any)
if albumArtist["name"] != "Main" {
t.Fatalf("track album artist = %q, want Main", albumArtist["name"])
}
}
func TestReleaseArtistCollapseCanBeDisabled(t *testing.T) {
cfg := &config.Config{Session: config.DefaultConfigData(), File: config.DefaultConfigData()}
cfg.Session.Beatport.VariousArtistsThreshold = -1
@@ -164,21 +208,19 @@ func TestReleaseArtistCollapseCanBeDisabled(t *testing.T) {
map[string]any{"name": "C"},
map[string]any{"name": "D"},
})
if got != "A; B; C; D" {
if got != "A, B, C & D" {
t.Fatalf("releaseArtistName() = %q", got)
}
}
func TestArtistSeparatorCanBeConfigured(t *testing.T) {
cfg := &config.Config{Session: config.DefaultConfigData(), File: config.DefaultConfigData()}
cfg.Session.Metadata.ArtistSeparator = " / "
c := New(cfg)
got := c.joinArtists([]any{
func TestDisplayArtistNamesUsesCreditPunctuation(t *testing.T) {
got := displayArtistNames(artistNames([]any{
map[string]any{"name": "A"},
map[string]any{"name": "B"},
})
if got != "A / B" {
t.Fatalf("joinArtists() = %q", got)
map[string]any{"name": "C"},
}))
if got != "A, B & C" {
t.Fatalf("displayArtistNames() = %q", got)
}
}
+26 -3
View File
@@ -564,7 +564,8 @@ func resultMap(resp map[string]any) map[string]any {
func normalizeTrack(raw map[string]any, fallbackID string, artistSeparator string) map[string]any {
trackID := canonicalTrackRefFromRaw(raw, fallbackID)
albumRaw := firstAlbum(raw)
artistName := joinArtists(raw, artistSeparator)
artistNames := artistNames(raw)
artistName := displayArtistNames(artistNames)
albumArtist := joinAlbumArtists(albumRaw, artistSeparator)
if albumArtist == "" {
albumArtist = artistName
@@ -589,6 +590,7 @@ func normalizeTrack(raw map[string]any, fallbackID string, artistSeparator strin
"source_track_id": jsonutil.StringFromAny(raw["realId"]),
"performer": map[string]any{"name": artistName},
"artist": map[string]any{"name": artistName, "id": firstArtistID(raw)},
"artist_names": artistNames,
"album": normalizeAlbumSummary(albumRaw, albumArtist),
"image": imageMapFromTrack(raw, albumRaw),
"cover": imageMapFromTrack(raw, albumRaw),
@@ -769,6 +771,10 @@ func firstArtistID(raw map[string]any) string {
}
func joinArtists(raw map[string]any, artistSeparator string) string {
return displayArtistNames(artistNames(raw))
}
func artistNames(raw map[string]any) []string {
artists, _ := raw["artists"].([]any)
parts := make([]string, 0, len(artists))
for _, entry := range artists {
@@ -780,13 +786,17 @@ func joinArtists(raw map[string]any, artistSeparator string) string {
parts = append(parts, name)
}
}
return strings.Join(parts, artistSeparator)
return parts
}
func joinAlbumArtists(albumRaw map[string]any, artistSeparator string) string {
if len(albumRaw) == 0 {
return ""
}
return displayArtistNames(albumArtistNames(albumRaw))
}
func albumArtistNames(albumRaw map[string]any) []string {
artists, _ := albumRaw["artists"].([]any)
parts := make([]string, 0, len(artists))
for _, entry := range artists {
@@ -798,7 +808,20 @@ func joinAlbumArtists(albumRaw map[string]any, artistSeparator string) string {
parts = append(parts, name)
}
}
return strings.Join(parts, artistSeparator)
return parts
}
func displayArtistNames(names []string) string {
switch len(names) {
case 0:
return ""
case 1:
return names[0]
case 2:
return names[0] + " & " + names[1]
default:
return strings.Join(names[:len(names)-1], ", ") + " & " + names[len(names)-1]
}
}
func (c *Client) artistSeparator() string {
+13 -2
View File
@@ -155,12 +155,23 @@ func TestGetMetadataTrackUsesModernTracksEndpoint(t *testing.T) {
if album, _ := meta["album"].(map[string]any); jsonutil.StringFromAny(album["title"]) != "OutRun" {
t.Fatalf("unexpected album: %+v", album)
}
if artist := jsonutil.NestedString(meta, "artist", "name"); artist != "Kavinsky; Lovefoxxx" {
if artist := jsonutil.NestedString(meta, "artist", "name"); artist != "Kavinsky & Lovefoxxx" {
t.Fatalf("artist = %q", artist)
}
if albumArtist := jsonutil.NestedString(meta, "album", "artist", "name"); albumArtist != "Kavinsky; Lovefoxxx" {
if albumArtist := jsonutil.NestedString(meta, "album", "artist", "name"); albumArtist != "Kavinsky & Lovefoxxx" {
t.Fatalf("album artist = %q", albumArtist)
}
artists, _ := meta["artist_names"].([]string)
if strings.Join(artists, ";") != "Kavinsky;Lovefoxxx" {
t.Fatalf("artist_names = %#v", artists)
}
}
func TestDisplayArtistNamesUsesCreditPunctuation(t *testing.T) {
got := displayArtistNames([]string{"A", "B", "C"})
if got != "A, B & C" {
t.Fatalf("displayArtistNames() = %q", got)
}
}
func TestLegacyDirectURLBuildsPlayableMP3URL(t *testing.T) {