package scheduling import ( "encoding/json" "fmt" "net/http" "strconv" "strings" "time" "crussell/clock" "crussell/db" "crussell/internal/validators" "crussell/mw" "log" "log/slog" ) var londonLocation = clock.London // --- Types --- type DefaultHours struct { Weekday int `json:"weekday" validate:"gte=0,lte=6"` StartTime string `json:"startTime" validate:"required"` EndTime string `json:"endTime" validate:"required"` IsOpen bool `json:"isOpen"` } type DayWorkingHours struct { Date string `json:"date"` Weekday int `json:"weekday"` StartTime string `json:"startTime"` EndTime string `json:"endTime"` IsOpen bool `json:"isOpen"` Source string `json:"source"` // "default" or "exceptional" } // --- Default Hours Handlers --- func GetDefaultHours(w http.ResponseWriter, r *http.Request) { rows, err := db.Conn.Query(r.Context(), ` SELECT weekday, start_time::text, end_time, is_open FROM working_hours ORDER BY weekday `) if err != nil { http.Error(w, "failed to fetch default hours", http.StatusInternalServerError) return } defer rows.Close() var hours []DefaultHours for rows.Next() { var h DefaultHours if err := rows.Scan(&h.Weekday, &h.StartTime, &h.EndTime, &h.IsOpen); err != nil { http.Error(w, "failed to scan default hours", http.StatusInternalServerError) return } hours = append(hours, h) } w.Header().Set("Content-Type", "application/json") _ = json.NewEncoder(w).Encode(hours) } func UpdateDefaultHours(w http.ResponseWriter, r *http.Request) { var hours []DefaultHours if err := json.NewDecoder(r.Body).Decode(&hours); err != nil { http.Error(w, "invalid payload", http.StatusBadRequest) return } for _, h := range hours { if err := validators.Validate.Struct(&h); err != nil { http.Error(w, err.Error(), http.StatusBadRequest) return } } // M8 // L5 for _, h := range hours { if !isValidTime15Min(h.StartTime) { http.Error(w, "start_time must be in 15-minute intervals (00, 15, 30, 45)", http.StatusBadRequest) return } if !isValidTime15Min(h.EndTime) { http.Error(w, "end_time must be in 15-minute intervals (00, 15, 30, 45)", http.StatusBadRequest) return } } tx, err := db.Conn.Begin(r.Context()) if err != nil { http.Error(w, "failed to start tx", http.StatusInternalServerError) return } defer func() { if err := tx.Rollback(r.Context()); err != nil && err.Error() != "tx is closed" { slog.Error("failed to rollback transaction", "err", err) } }() weekdays := make([]int, len(hours)) startTimes := make([]string, len(hours)) endTimes := make([]string, len(hours)) isOpenFlags := make([]bool, len(hours)) for i, h := range hours { weekdays[i] = h.Weekday startTimes[i] = h.StartTime endTimes[i] = h.EndTime isOpenFlags[i] = h.IsOpen } if _, err := tx.Exec(r.Context(), ` UPDATE working_hours AS wh SET start_time = v.start_time, end_time = v.end_time, is_open = v.is_open FROM ( SELECT unnest($1::smallint[]) AS weekday, unnest($2::time[]) AS start_time, unnest($3::time[]) AS end_time, unnest($4::boolean[]) AS is_open ) v WHERE wh.weekday = v.weekday `, weekdays, startTimes, endTimes, isOpenFlags); err != nil { http.Error(w, "failed to update default hours", http.StatusInternalServerError) return } if err := tx.Commit(r.Context()); err != nil { http.Error(w, "failed to commit", http.StatusInternalServerError) return } w.WriteHeader(http.StatusNoContent) } // --- GetWorkingHours (merged default + applied exceptions, UK-local) --- func GetWorkingHours(w http.ResponseWriter, r *http.Request) { startStr := r.URL.Query().Get("start") endStr := r.URL.Query().Get("end") if startStr == "" || endStr == "" { http.Error(w, "start and end query params required", http.StatusBadRequest) return } start, err := time.Parse("2006-01-02", startStr) if err != nil { http.Error(w, "invalid start date", http.StatusBadRequest) return } end, err := time.Parse("2006-01-02", endStr) if err != nil { http.Error(w, "invalid end date", http.StatusBadRequest) return } // Parse out_of_hours toggle (admin-only extended hours) outOfHours := r.URL.Query().Get("out_of_hours") == "true" isAdmin := false if userRole, ok := r.Context().Value(mw.UserRoleKey).(string); ok { isAdmin = userRole == "admin" } useOutOfHours := outOfHours && isAdmin // Set to local start/end of day in Europe/London so that bookings // at BST midnight (23:00 UTC the previous day) are included in the // correct date range. start = time.Date(start.Year(), start.Month(), start.Day(), 0, 0, 0, 0, londonLocation) end = time.Date(end.Year(), end.Month(), end.Day(), 23, 59, 59, 999999999, londonLocation) // Load default hours defaultMap := map[int]DefaultHours{} defRows, _ := db.Conn.Query(r.Context(), ` SELECT weekday, start_time::text, end_time, is_open FROM working_hours `) for defRows.Next() { var d DefaultHours if err := defRows.Scan(&d.Weekday, &d.StartTime, &d.EndTime, &d.IsOpen); err == nil { defaultMap[d.Weekday] = d } } defRows.Close() // Load exceptional applications for Mondays in range // Expand start to the Monday of its week so single-day queries still find the correct application startWeekday := int(start.Weekday()) daysSinceMonday := startWeekday - 1 if daysSinceMonday < 0 { daysSinceMonday = 6 // Sunday } queryStart := start.AddDate(0, 0, -daysSinceMonday) appRows, _ := db.Conn.Query(r.Context(), ` SELECT group_id, week_start FROM exceptional_group_applications WHERE week_start BETWEEN $1 AND $2 `, queryStart, end) type appEntry struct { GroupID int WeekStart time.Time } apps := []appEntry{} groupIDs := []int{} for appRows.Next() { var a appEntry if err := appRows.Scan(&a.GroupID, &a.WeekStart); err == nil { a.WeekStart = time.Date(a.WeekStart.Year(), a.WeekStart.Month(), a.WeekStart.Day(), 0, 0, 0, 0, time.UTC) apps = append(apps, a) groupIDs = append(groupIDs, a.GroupID) } } appRows.Close() exHoursMap := map[int]map[int]ExceptionalHours{} if len(groupIDs) > 0 { query, args, _ := sqlIn("SELECT group_id, weekday, start_time::text, end_time, is_open FROM exceptional_working_hours WHERE group_id IN (%s)", groupIDs) rows, _ := db.Conn.Query(r.Context(), query, args...) for rows.Next() { var h ExceptionalHours if err := rows.Scan(&h.GroupID, &h.Weekday, &h.StartTime, &h.EndTime, &h.IsOpen); err == nil { if _, ok := exHoursMap[h.GroupID]; !ok { exHoursMap[h.GroupID] = map[int]ExceptionalHours{} } exHoursMap[h.GroupID][h.Weekday] = h } } rows.Close() } // Generate final result per day var results []DayWorkingHours for d := start; !d.After(end); d = d.AddDate(0, 0, 1) { weekday := int(d.Weekday()) if weekday == 0 { weekday = 6 // Go Sunday=0 -> our Sunday=6 } else { weekday -= 1 } // Calculate the Monday of this week daysSinceMonday := int(d.Weekday()) - 1 if daysSinceMonday < 0 { daysSinceMonday = 6 // Sunday } weekStart := d.AddDate(0, 0, -daysSinceMonday) weekStart = time.Date(weekStart.Year(), weekStart.Month(), weekStart.Day(), 0, 0, 0, 0, time.UTC) var applied *ExceptionalHours weekStartStr := weekStart.Format("2006-01-02") for _, a := range apps { appWeekStartStr := a.WeekStart.Format("2006-01-02") if appWeekStartStr == weekStartStr { if dayHours, ok := exHoursMap[a.GroupID][weekday]; ok { applied = &dayHours } break } } var day DayWorkingHours day.Date = d.Format("2006-01-02") day.Weekday = weekday if applied != nil { day.StartTime = applied.StartTime day.EndTime = applied.EndTime day.IsOpen = applied.IsOpen day.Source = "exceptional" } else if def, ok := defaultMap[weekday]; ok { day.StartTime = def.StartTime day.EndTime = def.EndTime day.IsOpen = def.IsOpen day.Source = "default" } else { day.StartTime = "00:00" day.EndTime = "00:00" day.IsOpen = false day.Source = "default" } // Out-of-hours override for admin if useOutOfHours { day.IsOpen = true day.StartTime = "06:00" day.EndTime = "22:00" day.Source = "default" } results = append(results, day) } w.Header().Set("Content-Type", "application/json") _ = json.NewEncoder(w).Encode(results) } // isValidTime15Min checks that a time string (HH:MM or HH:MM:SS) has minutes in {00, 15, 30, 45}. func isValidTime15Min(t string) bool { parts := strings.Split(t, ":") if len(parts) < 2 || len(parts) > 3 { return false } if parts[0] == "" { return false } mins, err := strconv.Atoi(parts[1]) if err != nil { return false } return mins == 0 || mins == 15 || mins == 30 || mins == 45 } // --- helper: sqlIn generates IN queries dynamically for Postgres --- func sqlIn(query string, args []int) (string, []any, error) { inArgs := []any{} var placeholders strings.Builder for i, arg := range args { if i > 0 { placeholders.WriteString(",") } placeholders.WriteString(fmt.Sprintf("$%d", i+1)) inArgs = append(inArgs, arg) } query = fmt.Sprintf(query, placeholders.String()) return query, inArgs, nil } // --- Types for Available Hours --- type TimeSlot struct { StartTime string `json:"startTime"` EndTime string `json:"endTime"` } type DayAvailableHours struct { Date string `json:"date"` Weekday int `json:"weekday"` IsOpen bool `json:"isOpen"` Slots []TimeSlot `json:"slots"` Source string `json:"source"` Blockers []TimeSlot `json:"blockers,omitempty"` } // --- GetAvailableHours (with bookings, UK-local) --- func GetAvailableHours(w http.ResponseWriter, r *http.Request) { startStr := r.URL.Query().Get("start") endStr := r.URL.Query().Get("end") if startStr == "" || endStr == "" { http.Error(w, "start and end query params required", http.StatusBadRequest) return } start, _ := time.Parse("2006-01-02", startStr) end, _ := time.Parse("2006-01-02", endStr) // Parse out_of_hours toggle (admin-only extended hours) outOfHours := r.URL.Query().Get("out_of_hours") == "true" // set start/end of day in Europe/London (see comment above) start = time.Date(start.Year(), start.Month(), start.Day(), 0, 0, 0, 0, londonLocation) end = time.Date(end.Year(), end.Month(), end.Day(), 23, 59, 59, 999999999, londonLocation) // Load default hours defaultMap := map[int]DefaultHours{} defRows, _ := db.Conn.Query(r.Context(), `SELECT weekday, start_time::text, end_time, is_open FROM working_hours`) for defRows.Next() { var d DefaultHours if err := defRows.Scan(&d.Weekday, &d.StartTime, &d.EndTime, &d.IsOpen); err == nil { defaultMap[d.Weekday] = d } } defRows.Close() // Load exceptional applications for Mondays in range // Expand start to the Monday of its week so single-day queries still find the correct application startWeekday := int(start.Weekday()) daysSinceMonday := startWeekday - 1 if daysSinceMonday < 0 { daysSinceMonday = 6 // Sunday } queryStart := start.AddDate(0, 0, -daysSinceMonday) appRows, _ := db.Conn.Query(r.Context(), ` SELECT group_id, week_start FROM exceptional_group_applications WHERE week_start BETWEEN $1 AND $2 `, queryStart, end) type appEntry struct { GroupID int WeekStart time.Time } apps := []appEntry{} groupIDs := []int{} for appRows.Next() { var a appEntry if err := appRows.Scan(&a.GroupID, &a.WeekStart); err == nil { a.WeekStart = time.Date(a.WeekStart.Year(), a.WeekStart.Month(), a.WeekStart.Day(), 0, 0, 0, 0, time.UTC) apps = append(apps, a) groupIDs = append(groupIDs, a.GroupID) } } appRows.Close() exHoursMap := map[int]map[int]ExceptionalHours{} if len(groupIDs) > 0 { query, args, _ := sqlIn("SELECT group_id, weekday, start_time::text, end_time, is_open FROM exceptional_working_hours WHERE group_id IN (%s)", groupIDs) rows, _ := db.Conn.Query(r.Context(), query, args...) for rows.Next() { var h ExceptionalHours if err := rows.Scan(&h.GroupID, &h.Weekday, &h.StartTime, &h.EndTime, &h.IsOpen); err == nil { if _, ok := exHoursMap[h.GroupID]; !ok { exHoursMap[h.GroupID] = map[int]ExceptionalHours{} } exHoursMap[h.GroupID][h.Weekday] = h } } rows.Close() } // Load bookings that overlap the query range. // Must catch bookings that STARTED before the range but EXTEND INTO it // (e.g. a booking at 23:00 the previous day lasting 120min crosses midnight). // Use the same overlap condition as the booking creation handlers. bookingRows, _ := db.Conn.Query(r.Context(), ` SELECT b.start_time, b.total_duration_minutes AS total_duration FROM bookings b WHERE b.start_time < $2 AND b.end_time > $1 AND b.status NOT IN ('client_cancelled', 'we_cancelled', 'no_show', 'pending_release', 'deposit_lapsed') ORDER BY b.start_time `, start, end) bookings := map[string][]TimeSlot{} for bookingRows.Next() { var t time.Time var dur int if err := bookingRows.Scan(&t, &dur); err == nil { tLondon := t.In(londonLocation) dateStr := tLondon.Format("2006-01-02") endTime := t.Add(time.Duration(dur) * time.Minute) bookings[dateStr] = append(bookings[dateStr], TimeSlot{ StartTime: tLondon.Format("15:04"), EndTime: endTime.In(londonLocation).Format("15:04"), }) } } bookingRows.Close() // Load time blockers, excluding the current user's own RESERVATION entries // so their existing reservation doesn't hide the slot from them var excludeUserID *string if uid, ok := r.Context().Value(mw.UserIDKey).(string); ok && uid != "" { excludeUserID = &uid } blockers, err := GetTimeBlockersInRange(r.Context(), start, end, excludeUserID) if err != nil { log.Printf("Failed to load time blockers: %v", err) } // Convert blockers to map by date for easier lookup blockerMap := make(map[string][]TimeSlot) for _, blocker := range blockers { blockStart := blocker.StartTime blockEnd := blockStart.Add(time.Duration(blocker.DurationMinutes) * time.Minute) // Split multi-day blockers into per-day segments so subtractTimeSlots // only compares times within the same calendar day. Each segment's end // time uses "24:00" for day boundaries (midnight of the next day) since // "00:00" as an end time would incorrectly appear before all slot times. cur := blockStart for cur.Before(blockEnd) { dayEnd := time.Date(cur.Year(), cur.Month(), cur.Day(), 0, 0, 0, 0, londonLocation).AddDate(0, 0, 1) segEnd := blockEnd if segEnd.After(dayEnd) { segEnd = dayEnd } dateStr := cur.Format("2006-01-02") // Format times in Europe/London so that blocker time strings use // wall-clock hours matching working_hours and booking slots. londonStart := cur.In(londonLocation) londonEnd := segEnd.In(londonLocation) endStr := londonEnd.Format("15:04") if segEnd.Equal(dayEnd) { endStr = "24:00" } blockerMap[dateStr] = append(blockerMap[dateStr], TimeSlot{ StartTime: londonStart.Format("15:04"), EndTime: endStr, }) cur = dayEnd } } // Check if user is admin isAdmin := false if userRole, ok := r.Context().Value(mw.UserRoleKey).(string); ok { isAdmin = userRole == "admin" } // Generate available slots per day var results []DayAvailableHours for d := start; !d.After(end); d = d.AddDate(0, 0, 1) { weekday := int(d.Weekday()) if weekday == 0 { weekday = 6 } else { weekday -= 1 } // Calculate the Monday of this week daysSinceMonday := int(d.Weekday()) - 1 if daysSinceMonday < 0 { daysSinceMonday = 6 // Sunday } weekStart := d.AddDate(0, 0, -daysSinceMonday) weekStart = time.Date(weekStart.Year(), weekStart.Month(), weekStart.Day(), 0, 0, 0, 0, time.UTC) var applied *ExceptionalHours weekStartStr := weekStart.Format("2006-01-02") for _, a := range apps { appWeekStartStr := a.WeekStart.Format("2006-01-02") if appWeekStartStr == weekStartStr { if dayHours, ok := exHoursMap[a.GroupID][weekday]; ok { applied = &dayHours } break } } var day DayAvailableHours day.Date = d.Format("2006-01-02") day.Weekday = weekday var baseStart, baseEnd string var isOpen bool if applied != nil { baseStart = applied.StartTime baseEnd = applied.EndTime isOpen = applied.IsOpen day.Source = "exceptional" } else if def, ok := defaultMap[weekday]; ok { baseStart = def.StartTime baseEnd = def.EndTime isOpen = def.IsOpen day.Source = "default" } else { baseStart = "00:00" baseEnd = "00:00" isOpen = false day.Source = "default" } // Out-of-hours override for admin if outOfHours && isAdmin { baseStart = "06:00" baseEnd = "22:00" isOpen = true day.Source = "out_of_hours" } day.IsOpen = isOpen if isOpen { // Normalize to HH:MM to match blocker and booking time formats baseStart = normalizeTime(baseStart) baseEnd = normalizeTime(baseEnd) slots := []TimeSlot{{StartTime: baseStart, EndTime: baseEnd}} if booked, ok := bookings[day.Date]; ok { slots = subtractTimeSlots(slots, booked) } day.Slots = slots // Subtract time blockers from available slots for ALL users // (prevents showing blocked slots that would fail on reserve) if dayBlockers, ok := blockerMap[day.Date]; ok { day.Slots = subtractTimeSlots(day.Slots, dayBlockers) // Store blockers separately for admin warning display if isAdmin { day.Blockers = dayBlockers } } // Late night lock: after 22:00, block next morning 00:00-11:00 for non-admin users if !isAdmin { now := clock.Now() londonNow := now.In(londonLocation) if londonNow.Hour() >= 22 { // Check if this is tomorrow's date tomorrow := now.AddDate(0, 0, 1) tomorrowStr := tomorrow.Format("2006-01-02") if day.Date == tomorrowStr { // Add a fake blocker for 00:00-11:00 lateNightBlock := TimeSlot{ StartTime: "00:00", EndTime: "11:00", } day.Slots = subtractTimeSlots(day.Slots, []TimeSlot{lateNightBlock}) } } } } else { day.Slots = []TimeSlot{} } results = append(results, day) } w.Header().Set("Content-Type", "application/json") _ = json.NewEncoder(w).Encode(results) } // normalizeTime strips seconds from HH:MM:SS to HH:MM for consistent string // comparison with blocker and booking time formats in subtractTimeSlots. func normalizeTime(t string) string { parts := strings.Split(t, ":") if len(parts) < 2 { return t } hour := parts[0] minute := parts[1] // Only pad numeric single-digit segments. Non-numeric single-char // values (e.g. from garbage input) pass through without padding. if len(hour) == 1 && hour[0] >= '0' && hour[0] <= '9' { hour = "0" + hour } if len(minute) == 1 && minute[0] >= '0' && minute[0] <= '9' { minute = "0" + minute } return hour + ":" + minute } // subtractTimeSlots removes gaps from available slots // Returns the remaining available time slots after removing the gaps func subtractTimeSlots(available []TimeSlot, gaps []TimeSlot) []TimeSlot { if len(gaps) == 0 { return available } result := []TimeSlot{} for _, slot := range available { current := []TimeSlot{slot} // Apply each gap for _, gap := range gaps { var temp []TimeSlot for _, s := range current { // Check if gap overlaps with this slot if gap.EndTime <= s.StartTime || gap.StartTime >= s.EndTime { // No overlap, keep the slot as is temp = append(temp, s) } else { // Overlap exists, split the slot if s.StartTime < gap.StartTime { // Keep the part before the gap temp = append(temp, TimeSlot{ StartTime: s.StartTime, EndTime: gap.StartTime, }) } if gap.EndTime < s.EndTime { // Keep the part after the gap temp = append(temp, TimeSlot{ StartTime: gap.EndTime, EndTime: s.EndTime, }) } } } current = temp } result = append(result, current...) } return result }