Files
silo-server/internal/api/handlers/taste_seed.go
T

239 lines
7.9 KiB
Go

package handlers
import (
"context"
"encoding/json"
"log/slog"
"net/http"
"strconv"
apimw "github.com/Silo-Server/silo-server/internal/api/middleware"
"github.com/Silo-Server/silo-server/internal/models"
)
const (
tasteSeedDefaultLimit = 30
tasteSeedMaxLimit = 60
tasteSeedMaxPicks = 200
)
type tasteSeedItemsResponse struct {
Items []sectionItemResponse `json:"items"`
NextOffset *int `json:"next_offset,omitempty"`
}
type tasteSeedSubmitRequest struct {
ItemIDs []string `json:"item_ids"`
}
type tasteSeedSubmitResponse struct {
Added int `json:"added"`
}
// HandleTasteSeedItems handles GET /recommendations/taste-seed/items.
//
// Returns a paginated, hydrated list of "popular on this server" posters used
// for the new-user taste-seeding picker. Blends server-watched popularity with
// TMDB rating so fresh servers (no watch history yet) still surface meaningful
// content. The user_state field carries the existing is_favorite flag, so the
// UI can pre-select items the profile already favorited.
func (h *RecommendationsHandler) HandleTasteSeedItems(w http.ResponseWriter, r *http.Request) {
if h.recsRepo == nil || h.Fetcher == nil {
writeJSON(w, http.StatusOK, tasteSeedItemsResponse{Items: []sectionItemResponse{}})
return
}
limit := parseTasteSeedLimit(r)
offset := parseTasteSeedOffset(r)
userID := apimw.GetUserID(r.Context())
profileID := apimw.GetProfileID(r.Context())
filter := requestAccessFilter(r)
// Fetch a page-sized window of candidate IDs ordered by engagement + rating.
candidateIDs, err := h.recsRepo.GetTasteSeedCandidates(r.Context(), limit, offset)
if err != nil {
slog.Error("TasteSeedItems: candidate query failed", "user_id", userID, "profile_id", profileID, "error", err)
writeError(w, http.StatusInternalServerError, "internal_error", "Failed to fetch taste seed candidates")
return
}
if len(candidateIDs) == 0 {
writeJSON(w, http.StatusOK, tasteSeedItemsResponse{Items: []sectionItemResponse{}})
return
}
// Hydrate items, applying the user's library/content-rating access filter.
mediaItems, err := h.Fetcher.FetchItemsByContentIDs(r.Context(), candidateIDs, filter)
if err != nil {
slog.Error("TasteSeedItems: hydrate failed", "user_id", userID, "profile_id", profileID, "error", err)
writeError(w, http.StatusInternalServerError, "internal_error", "Failed to hydrate taste seed items")
return
}
// Preserve the candidate ordering returned by the repo, since
// FetchItemsByContentIDs does not guarantee input order.
itemMap := make(map[string]*models.MediaItem, len(mediaItems))
for _, mi := range mediaItems {
itemMap[mi.ContentID] = mi
}
stateMap := h.resolveTasteSeedUserStates(r.Context(), userID, profileID, mediaItems)
items := make([]sectionItemResponse, 0, len(candidateIDs))
for _, id := range candidateIDs {
mi, ok := itemMap[id]
if !ok || mi == nil {
continue
}
items = append(items, h.tasteSeedSectionItem(r.Context(), mi, stateMap))
}
resp := tasteSeedItemsResponse{Items: items}
// Pagination is on the underlying SQL candidate stream (offset/limit on
// GetTasteSeedCandidates), so we gate on candidate page fullness, not on
// post-hydration visible count. Comparing on `items` would incorrectly
// terminate pagination whenever access filtering trims the visible page —
// even though more candidate rows exist. The trade-off is that pathologically
// filtered tails may produce one extra empty fetch before next_offset goes
// nil; the infinite-query consumer handles that gracefully.
if len(candidateIDs) == limit {
next := offset + limit
resp.NextOffset = &next
}
writeJSON(w, http.StatusOK, resp)
}
// HandleTasteSeed handles POST /recommendations/taste-seed.
//
// Adds each of the provided content IDs to the active profile's favorites
// (idempotent — re-adds are safe). After bulk-add, asynchronously requests a
// taste profile refresh so recommendations re-rank using the new signals.
// Already-favorited items are silently skipped.
func (h *RecommendationsHandler) HandleTasteSeed(w http.ResponseWriter, r *http.Request) {
if h.storeProvider == nil {
writeError(w, http.StatusServiceUnavailable, "unavailable", "User store unavailable")
return
}
var req tasteSeedSubmitRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
writeError(w, http.StatusBadRequest, "bad_request", "Invalid request body")
return
}
if len(req.ItemIDs) == 0 {
writeError(w, http.StatusBadRequest, "bad_request", "At least one item_id is required")
return
}
if len(req.ItemIDs) > tasteSeedMaxPicks {
writeError(w, http.StatusBadRequest, "bad_request", "Too many items in a single request")
return
}
userID := apimw.GetUserID(r.Context())
profileID := apimw.GetProfileID(r.Context())
store, err := h.storeProvider.ForUser(r.Context(), userID)
if err != nil || store == nil {
slog.Error("TasteSeed: failed to load user store", "user_id", userID, "error", err)
writeError(w, http.StatusInternalServerError, "internal_error", "Failed to load user store")
return
}
added := 0
for _, id := range req.ItemIDs {
if id == "" {
continue
}
if err := store.AddFavorite(r.Context(), profileID, id); err != nil {
// Don't fail the whole request on a single item error — log and
// continue so the user's other picks still seed their profile.
slog.Warn("TasteSeed: failed to add favorite", "user_id", userID, "profile_id", profileID, "item_id", id, "error", err)
continue
}
added++
}
// Trigger an async taste profile refresh so the next discover/for-you
// fetch sees the new signals. This is fire-and-forget by design — the
// worker handles staleness.
if added > 0 {
var staler ProfileStaler
if h.recsRepo != nil {
staler = h.recsRepo
}
triggerProfileRefresh(r.Context(), staler, h.RecWorker, userID, profileID)
}
writeJSON(w, http.StatusOK, tasteSeedSubmitResponse{Added: added})
}
// resolveTasteSeedUserStates returns the per-item user state map (favorite,
// watchlist, played) so the UI can pre-mark items the profile already
// favorited. Returns nil on any error — the UI falls back to "not favorited"
// in that case.
func (h *RecommendationsHandler) resolveTasteSeedUserStates(ctx context.Context, userID int, profileID string, mediaItems []*models.MediaItem) map[string]*itemUserStateResponse {
if h.storeProvider == nil || len(mediaItems) == 0 {
return nil
}
store, err := h.storeProvider.ForUser(ctx, userID)
if err != nil || store == nil {
return nil
}
states, err := resolveItemUserStates(ctx, store, profileID, h.EpisodeRepo, mediaItems)
if err != nil {
return nil
}
return states
}
// tasteSeedSectionItem builds the trimmed section item used by the seed grid.
// We only populate poster fields — the picker doesn't need overlays, ratings,
// or progress.
func (h *RecommendationsHandler) tasteSeedSectionItem(ctx context.Context, mi *models.MediaItem, stateMap map[string]*itemUserStateResponse) sectionItemResponse {
item := sectionItemResponse{
ContentID: mi.ContentID,
Type: mi.Type,
Title: mi.Title,
Year: mi.Year,
Genres: mi.Genres,
Status: mi.Status,
PosterThumbhash: mi.PosterThumbhash,
}
if item.Genres == nil {
item.Genres = []string{}
}
if item.Keywords == nil {
item.Keywords = []string{}
}
if h.DetailSvc != nil {
item.PosterURL = h.DetailSvc.PresignURL(ctx, cardThumbnailPath(mi.PosterPath), "card")
}
if stateMap != nil {
item.UserState = stateMap[mi.ContentID]
}
return item
}
func parseTasteSeedLimit(r *http.Request) int {
if v := r.URL.Query().Get("limit"); v != "" {
if parsed, err := strconv.Atoi(v); err == nil && parsed > 0 {
if parsed > tasteSeedMaxLimit {
return tasteSeedMaxLimit
}
return parsed
}
}
return tasteSeedDefaultLimit
}
func parseTasteSeedOffset(r *http.Request) int {
if v := r.URL.Query().Get("offset"); v != "" {
if parsed, err := strconv.Atoi(v); err == nil && parsed >= 0 {
return parsed
}
}
return 0
}