package api import ( "encoding/json" "strconv" "strings" "testing" "time" "github.com/ponzischeme89/memby/server/internal/radarr" "github.com/ponzischeme89/memby/server/internal/recommend" "github.com/ponzischeme89/memby/server/internal/sonarr" ) var heroNow = time.Date(2026, 8, 7, 20, 0, 0, 0, time.UTC) func heroDaysAgo(days int) time.Time { return heroNow.AddDate(0, 0, -days) } func heroItem(id, name, itemType string) json.RawMessage { raw, err := json.Marshal(map[string]any{"Id": id, "Name": name, "Type": itemType}) if err != nil { panic(err) } return raw } func heroMovieCandidate(id string, released time.Time, rating float64, rated bool) heroCandidate { return heroCandidate{ ID: id, Name: id, Kind: heroMovie, Item: heroItem(id, id, "Movie"), ReleasedAt: released, Rating: rating, Rated: rated, } } // The request this whole feature answers: a well-received release should be able to lead // over a fresher one nobody liked, rather than the launcher being a list sorted only by // whichever date happened to be attached. func TestHeroRankingPrefersAWellRatedReleaseOverAFresherPoorOne(t *testing.T) { candidates := []heroCandidate{ heroMovieCandidate("fresh-and-bad", heroDaysAgo(1), 0.30, true), heroMovieCandidate("recent-and-good", heroDaysAgo(6), 0.92, true), } ranked := rankHeroCandidates(candidates, heroNow, 4) if len(ranked) != 2 || ranked[0].ID != "recent-and-good" { t.Fatalf("expected the well-reviewed release to lead, got %+v", heroIDs(ranked)) } } // The other half of the same rule: quality must not be able to overturn recency // altogether, or the hero becomes a list of the library's best films and stops being // about what is new at all. func TestHeroRankingKeepsAFreshReleaseAheadOfAnOldAcclaimedOne(t *testing.T) { candidates := []heroCandidate{ heroMovieCandidate("old-masterpiece", heroDaysAgo(400), 1.0, true), heroMovieCandidate("new-and-decent", heroDaysAgo(2), 0.70, true), } ranked := rankHeroCandidates(candidates, heroNow, 4) if ranked[0].ID != "new-and-decent" { t.Fatalf("expected the new release to lead, got %+v", heroIDs(ranked)) } } // An unrated title is not a bad title. On a household that has never configured MDBList // this is every title, and burying them would leave the hero empty. func TestHeroRankingDoesNotBuryUnratedTitles(t *testing.T) { candidates := []heroCandidate{ heroMovieCandidate("rated-poorly", heroDaysAgo(3), 0.20, true), heroMovieCandidate("unrated", heroDaysAgo(3), 0, false), } ranked := rankHeroCandidates(candidates, heroNow, 4) if ranked[0].ID != "unrated" { t.Fatalf("expected the unrated title to outrank the poorly rated one, got %+v", heroIDs(ranked)) } } // Radarr's cinema + 30 days is a guess, and a guess must not outrank a published date. func TestHeroRankingPenalisesAnEstimatedRelease(t *testing.T) { known := heroMovieCandidate("known", heroDaysAgo(4), 0.60, true) estimated := heroMovieCandidate("estimated", heroDaysAgo(4), 0.60, true) estimated.Estimated = true ranked := rankHeroCandidates([]heroCandidate{estimated, known}, heroNow, 4) if ranked[0].ID != "known" { t.Fatalf("expected the published date to lead, got %+v", heroIDs(ranked)) } } // A release Radarr has dated but which has not happened yet belongs to the schedule row. // The hero exists to be pressed. func TestHeroRecencyIgnoresFutureReleases(t *testing.T) { if score := heroRecency(heroNow.AddDate(0, 0, 3), heroNow); score != 0 { t.Fatalf("expected a future release to score 0, got %v", score) } if score := heroRecency(time.Time{}, heroNow); score != 0 { t.Fatalf("expected an unknown release to score 0, got %v", score) } if score := heroRecency(heroDaysAgo(heroWindowDays), heroNow); score != 0 { t.Fatalf("expected the window edge to score 0, got %v", score) } if score := heroRecency(heroNow, heroNow); score != 1 { t.Fatalf("expected a release today to score 1, got %v", score) } } func TestHeroRankingDeduplicatesAndCaps(t *testing.T) { candidates := []heroCandidate{ heroMovieCandidate("a", heroDaysAgo(1), 0.9, true), heroMovieCandidate("a", heroDaysAgo(1), 0.9, true), heroMovieCandidate("b", heroDaysAgo(2), 0.8, true), heroMovieCandidate("c", heroDaysAgo(3), 0.7, true), } ranked := rankHeroCandidates(candidates, heroNow, 2) if len(ranked) != 2 || ranked[0].ID != "a" || ranked[1].ID != "b" { t.Fatalf("expected [a b], got %+v", heroIDs(ranked)) } } // A candidate with no payload cannot be drawn, so it must never take one of four slots. func TestHeroRankingSkipsCandidatesWithNothingToDraw(t *testing.T) { empty := heroMovieCandidate("empty", heroDaysAgo(1), 1.0, true) empty.Item = nil ranked := rankHeroCandidates( []heroCandidate{empty, heroMovieCandidate("real", heroDaysAgo(9), 0.4, true)}, heroNow, 4, ) if len(ranked) != 1 || ranked[0].ID != "real" { t.Fatalf("expected only the drawable candidate, got %+v", heroIDs(ranked)) } } // Labels are claims. Each one has to have been earned, which is exactly what the // positional captions this replaced could not promise. func TestHeroLabels(t *testing.T) { series := heroMovieCandidate("s", heroDaysAgo(2), 0.5, true) series.Kind = heroSeriesPremiere season := series season.Kind = heroSeasonPremiere acclaimedOld := heroMovieCandidate("old", heroDaysAgo(300), 0.88, true) quietOld := heroMovieCandidate("quiet", heroDaysAgo(300), 0.40, true) cases := []struct { candidate heroCandidate want string }{ {series, heroLabelSeriesPremiere}, {season, heroLabelSeasonPremiere}, {heroMovieCandidate("new", heroDaysAgo(2), 0.5, true), heroLabelNewRelease}, {acclaimedOld, heroLabelAcclaimed}, {quietOld, heroLabelLibrary}, } for _, testCase := range cases { if got := heroLabel(testCase.candidate, heroNow); got != testCase.want { t.Fatalf("label for %q: want %q, got %q", testCase.candidate.ID, testCase.want, got) } } } // A card with nothing true to say says nothing, rather than inventing a reason. func TestHeroReasonIsEmptyWithoutEvidence(t *testing.T) { quiet := heroMovieCandidate("quiet", heroDaysAgo(300), 0.40, true) if reason := heroReason(quiet, heroNow, time.UTC); reason != "" { t.Fatalf("expected no reason, got %q", reason) } unknown := heroMovieCandidate("unknown", time.Time{}, 0, false) if reason := heroReason(unknown, heroNow, time.UTC); reason != "" { t.Fatalf("expected no reason, got %q", reason) } } func TestHeroReasonWording(t *testing.T) { premiere := heroMovieCandidate("p", heroDaysAgo(1), 0.5, true) premiere.Kind = heroSeriesPremiere if got, want := heroReason(premiere, heroNow, time.UTC), "A new series premiered yesterday"; got != want { t.Fatalf("want %q, got %q", want, got) } estimated := heroMovieCandidate("e", heroDaysAgo(0), 0.5, true) estimated.Estimated = true if got, want := heroReason(estimated, heroNow, time.UTC), "Expected to have landed today"; got != want { t.Fatalf("want %q, got %q", want, got) } acclaimed := heroMovieCandidate("a", heroDaysAgo(1), 0.9, true) if got, want := heroReason(acclaimed, heroNow, time.UTC), "Well reviewed, released yesterday"; got != want { t.Fatalf("want %q, got %q", want, got) } } // Ratings are read off the card the launcher is about to be sent, and averaged across // providers measured on different scales. func TestHeroRatingOfAveragesAcrossScales(t *testing.T) { raw, err := json.Marshal(map[string]any{ "Id": "x", "MembyRatings": []map[string]string{ {"source": "imdb", "score": "8.0"}, {"source": "tomatoes", "score": "90"}, }, }) if err != nil { t.Fatal(err) } rating, rated := heroRatingOf(raw) if !rated { t.Fatal("expected the card to be rated") } if want := (0.8 + 0.9) / 2; rating < want-0.0001 || rating > want+0.0001 { t.Fatalf("want %v, got %v", want, rating) } } // Emby's own score orders the hero when MDBList has never been asked. It is never drawn // (that would name a provider nobody consulted) but ordering four cards by it claims // nothing to anyone, and it is what makes this work before ratings are configured. func TestHeroRatingFallsBackToCommunityRating(t *testing.T) { raw, err := json.Marshal(map[string]any{"Id": "x", "CommunityRating": 7.5}) if err != nil { t.Fatal(err) } rating, rated := heroRatingOf(raw) if !rated || rating < 0.74 || rating > 0.76 { t.Fatalf("want 0.75, got %v (rated=%v)", rating, rated) } } func TestHeroRatingUnratedIsNotZero(t *testing.T) { if _, rated := heroRatingOf(heroItem("x", "X", "Movie")); rated { t.Fatal("expected an item with no scores to be unrated") } // An out-of-range or unparsable score is the same as no score, not a score of nil. raw, _ := json.Marshal(map[string]any{ "Id": "x", "MembyRatings": []map[string]string{{"source": "imdb", "score": "n/a"}}, }) if _, rated := heroRatingOf(raw); rated { t.Fatal("expected an unparsable score to leave the card unrated") } } // Radarr's digital date is the answer Emby's PremiereDate is asked for and gets wrong. func TestHeroReleaseIndexPrefersTMDBThenTitleAndYear(t *testing.T) { digital := heroDaysAgo(3) cinema := heroDaysAgo(40) index := newHeroReleaseIndex([]radarr.Movie{ {ID: 1, TMDBID: 550, Title: "Fight Club", Year: 1999, DigitalRelease: &digital}, {ID: 2, Title: "The Thing", Year: 1982, InCinemas: &cinema}, {ID: 3, Title: "The Thing", Year: 2011, InCinemas: &cinema}, }) release, ok := index.lookup("550", "", 0) if !ok || !release.at.Equal(digital) || release.estimated { t.Fatalf("expected the exact tmdb match, got %+v (ok=%v)", release, ok) } // A title with no tmdb id still resolves, and the year keeps the remake apart from // the original. if _, ok := index.lookup("", "The Thing", 1982); !ok { t.Fatal("expected the title/year fallback to resolve") } estimated, ok := index.lookup("", "The Thing", 2011) if !ok || !estimated.estimated { t.Fatalf("expected a cinema date to be reported as estimated, got %+v", estimated) } if _, ok := index.lookup("", "Nothing Like It", 2020); ok { t.Fatal("expected an unknown title to resolve to nothing") } } func sonarrPremiereEpisode( series string, seasonNumber, episodeNumber int, aired time.Time, hasFile bool, ) sonarr.Episode { return sonarr.Episode{ SeasonNumber: seasonNumber, EpisodeNumber: episodeNumber, AirDateUTC: &aired, HasFile: hasFile, Series: sonarr.Series{Title: series}, } } // "Series premieres only, not random TV series" is this function, and most of it is // about refusing. func TestSonarrPremieresSelectsOnlyPlayableSeasonOpeners(t *testing.T) { index := seriesIndex{ "newshow": {ID: "emby-new"}, "returning": {ID: "emby-returning"}, "notinlibrary": {}, "specials": {ID: "emby-specials"}, "undownloaded": {ID: "emby-undownloaded"}, } delete(index, "notinlibrary") episodes := []sonarr.Episode{ sonarrPremiereEpisode("New Show", 1, 1, heroDaysAgo(2), true), sonarrPremiereEpisode("Returning", 3, 1, heroDaysAgo(5), true), // Not a premiere: an ordinary episode of something already under way. sonarrPremiereEpisode("Returning", 3, 4, heroDaysAgo(1), true), // Season 0 is specials, not a premiere. sonarrPremiereEpisode("Specials", 0, 1, heroDaysAgo(1), true), // Not downloaded — news for the schedule row, not a card to press. sonarrPremiereEpisode("Undownloaded", 1, 1, heroDaysAgo(1), false), // Emby has never imported this show, so the card would have no page. sonarrPremiereEpisode("Not In Library", 1, 1, heroDaysAgo(1), true), // Outside the window. sonarrPremiereEpisode("New Show", 1, 1, heroDaysAgo(90), true), } premieres := sonarrPremieres(episodes, index, heroDaysAgo(heroWindowDays), heroNow) if len(premieres) != 2 { t.Fatalf("expected 2 premieres, got %d: %+v", len(premieres), premieres) } if premieres[0].EmbySeriesID != "emby-new" || premieres[0].SeasonNumber != 1 { t.Fatalf("expected the newest premiere first, got %+v", premieres[0]) } if premieres[1].EmbySeriesID != "emby-returning" || premieres[1].SeasonNumber != 3 { t.Fatalf("expected the returning show second, got %+v", premieres[1]) } } // A show that premiered and then returned inside one window is one card about its newer // season, not two cards about the same show. func TestSonarrPremieresKeepsOneCardPerSeries(t *testing.T) { index := seriesIndex{"show": {ID: "emby-show"}} premieres := sonarrPremieres([]sonarr.Episode{ sonarrPremiereEpisode("Show", 1, 1, heroDaysAgo(15), true), sonarrPremiereEpisode("Show", 2, 1, heroDaysAgo(2), true), }, index, heroDaysAgo(heroWindowDays), heroNow) if len(premieres) != 1 { t.Fatalf("expected one card, got %d", len(premieres)) } if premieres[0].SeasonNumber != 2 { t.Fatalf("expected the newer season, got season %d", premieres[0].SeasonNumber) } } // The hero draws from the rows the launcher is already being sent, and the rows it must // not draw from are the ones whose cards cannot be pressed or are already in progress. func TestHeroMovieCandidatesSkipUnpressableRows(t *testing.T) { scheduleCard, _ := json.Marshal(map[string]any{ "Id": "radarr:1", "Name": "Coming Soon", "Type": "Movie", "MembySource": "radarr", "MembyPlayable": false, }) rows := []recommend.Row{ {ID: "continue", Kind: "continue", Items: []json.RawMessage{heroItem("resume", "Resume", "Movie")}}, {ID: "movie-schedule", Kind: "movie-schedule", Items: []json.RawMessage{scheduleCard}}, {ID: "latest", Kind: "latest", Items: []json.RawMessage{ heroItem("film", "Film", "Movie"), heroItem("show", "Show", "Series"), }}, } candidates, facts := heroMovieCandidates(rows) if len(candidates) != 1 || candidates[0].ID != "film" { t.Fatalf("expected only the playable film, got %+v", heroIDs(candidates)) } if _, ok := facts["film"]; !ok { t.Fatal("expected the film's facts to be recorded for the Radarr lookup") } } // Emby writes dates in more than one shape, and one it will not parse is unknown rather // than fatal. func TestParseEmbyDate(t *testing.T) { for _, value := range []string{ "2026-08-01T00:00:00.0000000Z", "2026-08-01T00:00:00Z", "2026-08-01", } { parsed, err := parseEmbyDate(value) if err != nil { t.Fatalf("%q: %v", value, err) } if parsed.Year() != 2026 || parsed.Month() != time.August || parsed.Day() != 1 { t.Fatalf("%q parsed to %v", value, parsed) } } if _, err := parseEmbyDate("not a date"); err == nil { t.Fatal("expected an error") } if _, err := parseEmbyDate(""); err == nil { t.Fatal("expected an error") } } // The caption and the reason ride on the item, and an unknown field must survive being // decorated — the payload is Emby's, forwarded verbatim. func TestInjectHeroFieldsPreservesUnknownFields(t *testing.T) { raw, _ := json.Marshal(map[string]any{"Id": "x", "SomethingNew": "keep me"}) out := injectHeroFields(raw, heroLabelNewRelease, "Released yesterday") var members map[string]any if err := json.Unmarshal(out, &members); err != nil { t.Fatal(err) } if members["SomethingNew"] != "keep me" { t.Fatalf("unknown field was dropped: %v", members) } if members[heroLabelField] != heroLabelNewRelease { t.Fatalf("label missing: %v", members) } if members[heroReasonField] != "Released yesterday" { t.Fatalf("reason missing: %v", members) } // Nothing to say leaves the payload exactly as it was. if got := injectHeroFields(raw, "", ""); string(got) != string(raw) { t.Fatalf("expected the payload untouched, got %s", got) } } // heroPool is a merit-ordered pool, the shape rotateHeroCandidates is handed: 0 is the // best-scoring candidate and the numbers descend from there. func heroPool(size int) []heroCandidate { pool := make([]heroCandidate, 0, size) for index := 0; index < size; index++ { id := "title-" + strconv.Itoa(index) pool = append(pool, heroMovieCandidate(id, heroDaysAgo(index), 0.9, true)) } return pool } // The property that makes this a rotation rather than a shuffle: whatever slot is drawn, // the first card came from the best band and the second from the one below it. A // well-reviewed new release can never be pushed down the row by variation. func TestHeroRotationDrawsOneFromEachMeritBand(t *testing.T) { pool := heroPool(heroPoolLimit) band := heroPoolLimit / heroRowLimit for hour := 0; hour < 24; hour++ { now := time.Date(2026, 8, 7, hour, 0, 0, 0, time.UTC) seed := heroVariationSeed("viewer", heroRotationSlot(now, time.UTC)) drawn := rotateHeroCandidates(pool, seed, heroRowLimit) if len(drawn) != heroRowLimit { t.Fatalf("hour %d: expected %d cards, got %v", hour, heroRowLimit, heroIDs(drawn)) } for slot, candidate := range drawn { index, err := strconv.Atoi(strings.TrimPrefix(candidate.ID, "title-")) if err != nil { t.Fatal(err) } if index/band != slot { t.Fatalf("hour %d: slot %d drew %s, out of band %d", hour, slot, candidate.ID, index/band) } } } } // The complaint this feature answers: the same two titles led the launcher for five days. // The lead card has to actually move, both across a day and across days. func TestHeroRotationChangesThroughTheDayAndAcrossDays(t *testing.T) { pool := heroPool(heroPoolLimit) leads := map[string]bool{} for day := 7; day < 12; day++ { for hour := 0; hour < 24; hour += 24 / heroRotationsPerDay { now := time.Date(2026, 8, day, hour, 0, 0, 0, time.UTC) seed := heroVariationSeed("viewer", heroRotationSlot(now, time.UTC)) leads[rotateHeroCandidates(pool, seed, heroRowLimit)[0].ID] = true } } // The top band holds three titles; over five days of four slots each, a draw that // never moved off one of them would be a rotation in name only. if len(leads) < 2 { t.Fatalf("expected the lead card to move, saw only %v", leads) } } // The home response is cached for a minute and rebuilt constantly behind it. A hero that // re-drew per request would change under somebody walking along the row. func TestHeroRotationIsStableWithinASlot(t *testing.T) { pool := heroPool(heroPoolLimit) location := time.UTC first := heroRotationSlot(time.Date(2026, 8, 7, 19, 0, 0, 0, location), location) second := heroRotationSlot(time.Date(2026, 8, 7, 20, 30, 0, 0, location), location) if first != second { t.Fatalf("expected one evening slot, got %q and %q", first, second) } seed := heroVariationSeed("viewer", first) want := heroIDs(rotateHeroCandidates(pool, seed, heroRowLimit)) for attempt := 0; attempt < 5; attempt++ { got := heroIDs(rotateHeroCandidates(pool, seed, heroRowLimit)) if strings.Join(got, ",") != strings.Join(want, ",") { t.Fatalf("draw %d differed: %v vs %v", attempt, got, want) } } } // Two people signed into the same house get their own draw — there is no reason for the // same card to lead both televisions at the same moment. func TestHeroRotationVariesByViewer(t *testing.T) { pool := heroPool(heroPoolLimit) slot := heroRotationSlot(heroNow, time.UTC) same := 0 for _, viewer := range []string{"a", "b", "c", "d"} { if rotateHeroCandidates(pool, heroVariationSeed(viewer, slot), heroRowLimit)[0].ID == rotateHeroCandidates(pool, heroVariationSeed("a", slot), heroRowLimit)[0].ID { same++ } } if same == 4 { t.Fatal("every viewer drew the same lead card") } } // A pool with nothing spare to rotate between must go out in merit order, not be reordered // for the sake of it — this is the household whose library has barely eight hero-worthy // titles in it. func TestHeroRotationKeepsMeritOrderWithNothingToRotate(t *testing.T) { pool := heroPool(heroRowLimit) drawn := rotateHeroCandidates(pool, "seed", heroRowLimit) for index, candidate := range drawn { if candidate.ID != pool[index].ID { t.Fatalf("expected merit order, got %v", heroIDs(drawn)) } } if rotateHeroCandidates(nil, "seed", heroRowLimit) != nil { t.Fatal("expected no cards from no candidates") } if rotateHeroCandidates(pool, "seed", 0) != nil { t.Fatal("expected no cards for no slots") } } // The slot is the household's local part of the day, not UTC's — "the evening" has to mean // the viewer's evening, for the reason the direct path's daily rotation is local too. func TestHeroRotationSlotIsLocal(t *testing.T) { auckland := time.FixedZone("NZST", 12*60*60) // Midday in Auckland is the previous day in UTC, and must not be read as the small // hours of it. now := time.Date(2026, 8, 7, 12, 0, 0, 0, auckland) if got, want := heroRotationSlot(now, auckland), "2026-08-07#2"; got != want { t.Fatalf("expected %q, got %q", want, got) } if got, want := heroRotationSlot(now, time.UTC), "2026-08-07#0"; got != want { t.Fatalf("expected %q, got %q", want, got) } // The date is in the slot, or the four slots repeat themselves every day. tomorrow := heroRotationSlot(now.AddDate(0, 0, 1), auckland) if tomorrow == heroRotationSlot(now, auckland) { t.Fatalf("expected the day to be part of the slot, got %q", tomorrow) } } func TestPinnedHeroMoviesLeadAndOrganicSelectionFillsTheGrid(t *testing.T) { pinned := []heroCandidate{ {ID: "custom-2", Item: json.RawMessage(`{"Id":"custom-2"}`)}, {ID: "custom-1", Item: json.RawMessage(`{"Id":"custom-1"}`)}, } organic := []heroCandidate{ // A pinned title can also qualify organically; it must still appear only once. {ID: "custom-1", Item: json.RawMessage(`{"Id":"custom-1"}`), Kind: heroSeasonPremiere}, {ID: "release-1", Item: json.RawMessage(`{"Id":"release-1"}`)}, {ID: "release-2", Item: json.RawMessage(`{"Id":"release-2"}`)}, {ID: "library-1", Item: json.RawMessage(`{"Id":"library-1"}`)}, } got := mergePinnedHeroCandidates(pinned, organic, organic[1:], 4) want := []string{"custom-2", "custom-1", "release-1", "release-2"} if strings.Join(heroIDs(got), ",") != strings.Join(want, ",") { t.Fatalf("pinned hero order = %v, want %v", heroIDs(got), want) } if got[1].Kind != heroSeasonPremiere { t.Fatalf("pin lost its natural premiere evidence: %+v", got[1]) } } func TestPinnedHeroMergeHonoursAnEmptyOrShortGrid(t *testing.T) { candidate := heroCandidate{ID: "custom", Item: json.RawMessage(`{"Id":"custom"}`)} if got := mergePinnedHeroCandidates([]heroCandidate{candidate}, nil, nil, 0); got != nil { t.Fatalf("zero-sized grid = %v, want nil", heroIDs(got)) } if got := heroIDs(mergePinnedHeroCandidates([]heroCandidate{candidate}, nil, nil, 4)); strings.Join(got, ",") != "custom" { t.Fatalf("short grid = %v, want custom", got) } } func TestPrimeSubtitleChangesOnlyTheLargeFirstCard(t *testing.T) { candidate := heroCandidate{ReleasedAt: heroDaysAgo(2), Kind: heroMovie} if got := heroReasonForPosition(candidate, 0, " Family pick tonight ", heroNow, time.UTC); got != "Family pick tonight" { t.Fatalf("prime subtitle = %q", got) } if got := heroReasonForPosition(candidate, 1, "Family pick tonight", heroNow, time.UTC); got == "Family pick tonight" || !strings.Contains(got, "Released") { t.Fatalf("secondary card lost its natural reason: %q", got) } if got := heroReasonForPosition(candidate, 0, "", heroNow, time.UTC); !strings.Contains(got, "Released") { t.Fatalf("blank override did not fall back to the natural reason: %q", got) } } func TestPinnedSeriesUsesTheSameNaturalPresentationAsOrganicTitles(t *testing.T) { candidate := heroCandidate{Kind: heroSeries, ReleasedAt: heroDaysAgo(3)} if got := heroLabel(candidate, heroNow); got != heroLabelNewRelease { t.Fatalf("recent series label = %q, want %q", got, heroLabelNewRelease) } if got := heroReason(candidate, heroNow, time.UTC); !strings.Contains(got, "new series premiered") { t.Fatalf("recent series reason = %q", got) } candidate.ReleasedAt = heroDaysAgo(100) candidate.Rated, candidate.Rating = true, 0.9 if got := heroLabel(candidate, heroNow); got != heroLabelAcclaimed { t.Fatalf("older acclaimed series label = %q, want %q", got, heroLabelAcclaimed) } } func TestAdminHeroSearchAcceptsFilmsAndSeriesOnly(t *testing.T) { for _, itemType := range []string{"Movie", "Series"} { if item, ok := adminHeroItem(heroItem("id", "Title", itemType)); !ok || item.Type != itemType { t.Fatalf("%s was not accepted: %+v, %t", itemType, item, ok) } } if _, ok := adminHeroItem(heroItem("episode", "Episode", "Episode")); ok { t.Fatal("episode was accepted as a pinnable hero title") } } func heroIDs(candidates []heroCandidate) []string { ids := make([]string, 0, len(candidates)) for _, candidate := range candidates { ids = append(ids, candidate.ID) } return ids }