369 lines
10 KiB
Go
369 lines
10 KiB
Go
package recommend
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import (
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"context"
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"encoding/json"
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"log/slog"
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"net/url"
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"sort"
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"strconv"
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"strings"
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"sync"
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"github.com/ponzischeme89/memby/server/internal/emby"
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)
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// Row is one horizontal strip on the TV home screen.
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type Row struct {
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ID string `json:"id"`
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Title string `json:"title"`
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Kind string `json:"kind"`
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Items []json.RawMessage `json:"items"`
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}
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// Source is the slice of the Emby client this package needs, narrowed so tests can
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// supply a fake without a server.
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type Source interface {
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Items(ctx context.Context, cred emby.Credentials, params url.Values) (*emby.ItemsResult, error)
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Similar(ctx context.Context, cred emby.Credentials, itemID string, params url.Values) (*emby.ItemsResult, error)
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}
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// LibrarySource is the imported catalogue. When present, the candidate pool comes from
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// Postgres instead of Emby, which takes the rebuild off Emby entirely.
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type LibrarySource interface {
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LibraryCandidates(ctx context.Context, genres []string, limit int) ([]json.RawMessage, error)
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}
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// CuratedLibrarySource is the optional richer catalogue query used for server-authored
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// collections. Keeping it separate preserves compatibility with simpler test sources.
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type CuratedLibrarySource interface {
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CuratedCandidates(
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ctx context.Context,
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itemTypes, genres, studios []string,
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limit int,
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) ([]json.RawMessage, error)
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}
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// CuratedRow defines one reusable server-side shelf. Filtering determines membership;
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// the user's profile determines both item order and shelf order.
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type CuratedRow struct {
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ID string
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Title string
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Kind string
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ItemTypes []string
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Genres []string
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Studios []string
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}
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type Engine struct {
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source Source
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log *slog.Logger
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// Library is optional; nil (or an empty library) falls back to querying Emby.
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Library LibrarySource
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// MinRowItems is the shortest row worth showing. A two-item "Recommended" strip
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// looks broken next to full rows, so short rows are dropped entirely.
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MinRowItems int
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// MaxSimilarRows caps "Because you watched …" rows so the home screen stays a home
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// screen rather than a wall of near-duplicates.
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MaxSimilarRows int
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RowSize int
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CuratedRows []CuratedRow
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}
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func NewEngine(source Source, log *slog.Logger) *Engine {
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return &Engine{
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source: source,
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log: log,
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MinRowItems: 4,
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MaxSimilarRows: 2,
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RowSize: 20,
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CuratedRows: []CuratedRow{
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{
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ID: "curated:apple-tv",
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Title: "Apple TV+ Shows",
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Kind: "shows",
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ItemTypes: []string{"Series"},
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Studios: []string{"Apple TV+", "Apple TV Plus", "Apple Studios"},
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},
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{
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ID: "curated:drama-shows",
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Title: "Drama TV Shows",
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Kind: "shows",
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ItemTypes: []string{"Series"},
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Genres: []string{"Drama"},
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},
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{
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ID: "curated:comedy-shows",
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Title: "Comedy TV Shows",
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Kind: "shows",
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ItemTypes: []string{"Series"},
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Genres: []string{"Comedy"},
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},
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},
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}
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}
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const (
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historyFields = "Genres,Studios,CommunityRating,SeriesName,ProductionYear,RunTimeTicks"
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candidateFields = "Genres,Studios,CommunityRating,ProductionYear,RunTimeTicks,PrimaryImageAspectRatio"
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rowImageTypes = "Backdrop,Primary,Logo"
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)
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// BuildRows produces the recommendation rows for one user.
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//
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// Cost is a handful of Emby queries, which is why callers cache the result rather than
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// computing it on every home load.
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func (e *Engine) BuildRows(ctx context.Context, cred emby.Credentials) ([]Row, error) {
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history, favorites, err := e.gatherSignals(ctx, cred)
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if err != nil {
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return nil, err
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}
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profile := BuildProfile(history, favorites)
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rows := make([]Row, 0, e.MaxSimilarRows+1+len(e.CuratedRows))
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if !profile.IsEmpty() {
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for _, seed := range e.seedsFor(profile) {
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row, ok := e.similarRow(ctx, cred, profile, seed)
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if ok {
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rows = append(rows, row)
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}
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}
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if row, ok := e.historyRow(ctx, cred, profile); ok {
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rows = append(rows, row)
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}
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}
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rows = append(rows, e.buildCuratedRows(ctx, profile)...)
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return rows, nil
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}
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func (e *Engine) buildCuratedRows(ctx context.Context, profile Profile) []Row {
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library, ok := e.Library.(CuratedLibrarySource)
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if !ok {
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return nil
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}
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type rankedDefinition struct {
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definition CuratedRow
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affinity float64
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order int
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}
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definitions := make([]rankedDefinition, 0, len(e.CuratedRows))
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for order, definition := range e.CuratedRows {
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definitions = append(definitions, rankedDefinition{
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definition: definition,
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affinity: profile.CollectionAffinity(definition.Genres, definition.Studios),
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order: order,
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})
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}
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sort.SliceStable(definitions, func(i, j int) bool {
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if definitions[i].affinity != definitions[j].affinity {
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return definitions[i].affinity > definitions[j].affinity
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}
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return definitions[i].order < definitions[j].order
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})
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rows := make([]Row, 0, len(definitions))
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for _, ranked := range definitions {
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definition := ranked.definition
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raws, err := library.CuratedCandidates(
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ctx,
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definition.ItemTypes,
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definition.Genres,
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definition.Studios,
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e.RowSize*6,
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)
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if err != nil {
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e.log.Warn("curated row failed", "row", definition.ID, "error", err)
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continue
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}
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items := RankCollection(profile, Decode(raws), e.RowSize)
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if len(items) < e.MinRowItems {
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continue
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}
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rows = append(rows, Row{
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ID: definition.ID,
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Title: definition.Title,
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Kind: definition.Kind,
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Items: Raws(items),
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})
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}
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return rows
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}
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// gatherSignals reads what the user has watched and favourited, in parallel.
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func (e *Engine) gatherSignals(ctx context.Context, cred emby.Credentials) (history, favorites []Item, err error) {
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var (
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wg sync.WaitGroup
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mu sync.Mutex
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firstErr error
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)
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fetch := func(dest *[]Item, params url.Values) {
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wg.Add(1)
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go func() {
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defer wg.Done()
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result, fetchErr := e.source.Items(ctx, cred, params)
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mu.Lock()
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defer mu.Unlock()
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if fetchErr != nil {
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if firstErr == nil {
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firstErr = fetchErr
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}
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return
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}
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*dest = Decode(result.Items)
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}()
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}
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// In-progress titles are the strongest signal available, so they lead the history
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// list and pick up the heaviest recency weights.
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var resumable, played []Item
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fetch(&resumable, url.Values{
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"Filters": {"IsResumable"},
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"IncludeItemTypes": {"Movie,Episode"},
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"Recursive": {"true"},
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"SortBy": {"DatePlayed"},
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"SortOrder": {"Descending"},
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"Limit": {"20"},
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"Fields": {historyFields},
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"EnableUserData": {"true"},
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"EnableImages": {"false"},
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})
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fetch(&played, url.Values{
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"Filters": {"IsPlayed"},
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"IncludeItemTypes": {"Movie,Episode"},
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"Recursive": {"true"},
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"SortBy": {"DatePlayed"},
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"SortOrder": {"Descending"},
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"Limit": {"60"},
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"Fields": {historyFields},
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"EnableUserData": {"true"},
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"EnableImages": {"false"},
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})
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fetch(&favorites, url.Values{
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"Filters": {"IsFavorite"},
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"IncludeItemTypes": {"Movie,Series"},
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"Recursive": {"true"},
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"SortBy": {"SortName"},
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"Limit": {"40"},
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"Fields": {historyFields},
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"EnableUserData": {"true"},
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"EnableImages": {"false"},
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})
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wg.Wait()
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if firstErr != nil {
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return nil, nil, firstErr
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}
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return append(resumable, played...), favorites, nil
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}
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// libraryCandidates reads the pool from the imported library. Returns ok=false when
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// there is no library, it is empty, or it errors — every one of which means "ask Emby".
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func (e *Engine) libraryCandidates(ctx context.Context, genres []string) ([]Item, bool) {
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if e.Library == nil {
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return nil, false
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}
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raws, err := e.Library.LibraryCandidates(ctx, genres, e.RowSize*6)
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if err != nil {
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e.log.Warn("library candidates failed; falling back to emby", "error", err)
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return nil, false
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}
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if len(raws) == 0 {
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return nil, false
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}
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return Decode(raws), true
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}
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func (e *Engine) seedsFor(profile Profile) []Seed {
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if len(profile.Seeds) <= e.MaxSimilarRows {
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return profile.Seeds
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}
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return profile.Seeds[:e.MaxSimilarRows]
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}
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// similarRow asks Emby what resembles a title the user just watched. Emby's own
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// similarity scoring beats anything computed here, so this only filters out the seen.
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func (e *Engine) similarRow(ctx context.Context, cred emby.Credentials, profile Profile, seed Seed) (Row, bool) {
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result, err := e.source.Similar(ctx, cred, seed.ID, url.Values{
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"UserId": {cred.UserID},
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"Limit": {strconv.Itoa(e.RowSize * 2)},
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"Fields": {candidateFields},
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"ImageTypeLimit": {"1"},
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"EnableImageTypes": {rowImageTypes},
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"EnableUserData": {"true"},
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})
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if err != nil {
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// One dead row should never sink the home screen.
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e.log.Warn("similar lookup failed", "seed", seed.ID, "error", err)
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return Row{}, false
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}
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items := FilterUnseen(profile, Decode(result.Items), e.RowSize)
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if len(items) < e.MinRowItems {
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return Row{}, false
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}
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return Row{
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ID: "similar:" + seed.ID,
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Title: "Because you watched " + seed.Name,
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Kind: "similar",
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Items: Raws(items),
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}, true
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}
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// historyRow is the genre-affinity row: unwatched titles from the genres the user has
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// been spending time in, ranked by how closely they match the whole profile.
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func (e *Engine) historyRow(ctx context.Context, cred emby.Credentials, profile Profile) (Row, bool) {
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genres := profile.TopGenres(3)
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if len(genres) == 0 {
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return Row{}, false
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}
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if candidates, ok := e.libraryCandidates(ctx, genres); ok {
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items := Rank(profile, candidates, e.RowSize)
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if len(items) < e.MinRowItems {
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return Row{}, false
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}
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return Row{
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ID: "recommended",
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Title: "Recommended from your watching history",
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Kind: "recommended",
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Items: Raws(items),
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}, true
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}
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// Emby treats "|" as OR in a Genres filter, so one query covers every top genre.
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result, err := e.source.Items(ctx, cred, url.Values{
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"IncludeItemTypes": {"Movie,Series"},
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"Recursive": {"true"},
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"Filters": {"IsUnplayed"},
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"Genres": {strings.Join(genres, "|")},
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"SortBy": {"CommunityRating"},
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"SortOrder": {"Descending"},
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"Limit": {"120"},
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"Fields": {candidateFields},
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"ImageTypeLimit": {"1"},
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"EnableImages": {"true"},
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"EnableImageTypes": {rowImageTypes},
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"EnableUserData": {"true"},
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})
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if err != nil {
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e.log.Warn("recommendation candidates failed", "error", err)
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return Row{}, false
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}
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items := Rank(profile, Decode(result.Items), e.RowSize)
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if len(items) < e.MinRowItems {
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return Row{}, false
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}
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return Row{
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ID: "recommended",
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Title: "Recommended from your watching history",
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Kind: "recommended",
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Items: Raws(items),
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}, true
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}
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