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geniusrun/backend/internal/store/activities.go

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package store
import (
"context"
"database/sql"
"fmt"
)
// Activity is geniusrun's persisted view of a Garmin activity. Field mapping
// from the Garmin/MCP response happens in internal/sync, not here, so this
// package stays independent of internal/garmin.
//
// Deliberately NOT modeled here (though Garmin's response includes them):
// ActivityName/ActivityType, plus every field removed in the 2026-07
// dedup pass (BeginTimestampMs, MaxSpeedMps, ElevationLossM, Calories,
// LapCount, TrainingEffectLabel, HrTimeInZone1-5). None of them are read by
// any SQL query, the classify rule engine, or any other Go code -- they'd be
// pure duplicates of RawJSON with no purpose beyond being slightly more
// convenient to read than parsing JSON. ActivityName/ActivityType do have a
// real frontend display need, so the API layer (internal/api) decodes them
// from RawJSON at response time instead of storing a redundant copy -- see
// decodeActivityDisplayFields.
type Activity struct {
ID int64
GarminActivityID int64
EventTypeKey string
WorkoutID *int64
StartTimeUTC string
DurationSeconds float64
DistanceMeters float64
AvgHR *float64
MaxHR *float64
AvgSpeedMps *float64
ElevationGainM *float64
AerobicTrainingEffect *float64
AnaerobicTrainingEffect *float64
VO2MaxValue *float64
RawJSON string
DetailsFetchedAt *string
DetailsRawJSON *string
SplitsFetchedAt *string
// WorkoutRawJSON is the genuine raw get_workout_by_id() response for this
// activity's structured workout -- the source used to compute each lap's
// TargetPaceLowMps/HighMps and TargetHRLowBpm/HighBpm (see
// internal/sync/mapping.go's alignWorkoutTargets). Nil when the activity
// has no WorkoutID, or was synced before this column existed.
WorkoutRawJSON *string
CreatedAt string
UpdatedAt string
}
// UpsertActivity inserts a new activity for userID or updates the existing
// row for the same (userID, garmin_activity_id) pair (idempotent, safe to
// call on every sync pass), and returns its internal id.
func (db *DB) UpsertActivity(ctx context.Context, userID int64, a Activity) (int64, error) {
_, err := db.ExecContext(ctx, `
INSERT INTO activities (
user_id, garmin_activity_id, event_type_key, workout_id, start_time_utc,
duration_seconds, distance_meters, avg_hr, max_hr,
avg_speed_mps, elevation_gain_m,
aerobic_training_effect, anaerobic_training_effect, vo2max_value,
raw_json, updated_at
) VALUES (?,?,?,?,?,?,?,?,?,?,?,?,?,?,?, datetime('now'))
ON CONFLICT(user_id, garmin_activity_id) DO UPDATE SET
event_type_key=excluded.event_type_key,
workout_id=excluded.workout_id,
start_time_utc=excluded.start_time_utc,
duration_seconds=excluded.duration_seconds,
distance_meters=excluded.distance_meters,
avg_hr=excluded.avg_hr,
max_hr=excluded.max_hr,
avg_speed_mps=excluded.avg_speed_mps,
elevation_gain_m=excluded.elevation_gain_m,
aerobic_training_effect=excluded.aerobic_training_effect,
anaerobic_training_effect=excluded.anaerobic_training_effect,
vo2max_value=excluded.vo2max_value,
raw_json=excluded.raw_json,
updated_at=datetime('now')
`,
userID, a.GarminActivityID, a.EventTypeKey, a.WorkoutID, a.StartTimeUTC,
a.DurationSeconds, a.DistanceMeters, a.AvgHR, a.MaxHR,
a.AvgSpeedMps, a.ElevationGainM,
a.AerobicTrainingEffect, a.AnaerobicTrainingEffect, a.VO2MaxValue,
a.RawJSON,
)
if err != nil {
return 0, fmt.Errorf("upsert activity %d for user %d: %w", a.GarminActivityID, userID, err)
}
var id int64
if err := db.QueryRowContext(ctx, `SELECT id FROM activities WHERE user_id = ? AND garmin_activity_id = ?`, userID, a.GarminActivityID).Scan(&id); err != nil {
return 0, fmt.Errorf("fetch id for activity %d (user %d): %w", a.GarminActivityID, userID, err)
}
return id, nil
}
func scanActivity(row interface{ Scan(...any) error }) (Activity, error) {
var a Activity
err := row.Scan(
&a.ID, &a.GarminActivityID, &a.EventTypeKey, &a.WorkoutID, &a.StartTimeUTC,
&a.DurationSeconds, &a.DistanceMeters, &a.AvgHR, &a.MaxHR,
&a.AvgSpeedMps, &a.ElevationGainM,
&a.AerobicTrainingEffect, &a.AnaerobicTrainingEffect, &a.VO2MaxValue,
&a.RawJSON, &a.DetailsFetchedAt, &a.DetailsRawJSON, &a.SplitsFetchedAt, &a.WorkoutRawJSON,
&a.CreatedAt, &a.UpdatedAt,
)
return a, err
}
const activityColumns = `
id, garmin_activity_id, event_type_key, workout_id, start_time_utc,
duration_seconds, distance_meters, avg_hr, max_hr,
avg_speed_mps, elevation_gain_m,
aerobic_training_effect, anaerobic_training_effect, vo2max_value,
raw_json, details_fetched_at, details_raw_json, splits_fetched_at, workout_raw_json,
created_at, updated_at
`
// GetActivity fetches one activity by its internal id, scoped to userID.
func (db *DB) GetActivity(ctx context.Context, userID, id int64) (Activity, bool, error) {
row := db.QueryRowContext(ctx, `SELECT `+activityColumns+` FROM activities WHERE id = ? AND user_id = ?`, id, userID)
a, err := scanActivity(row)
if err == sql.ErrNoRows {
return Activity{}, false, nil
}
if err != nil {
return Activity{}, false, fmt.Errorf("get activity %d for user %d: %w", id, userID, err)
}
return a, true, nil
}
// ActivityFilter narrows ListActivities results. Zero values mean "no filter".
type ActivityFilter struct {
FromDate string // inclusive, "YYYY-MM-DD"
ToDate string // inclusive, "YYYY-MM-DD"
Limit int
Offset int
}
// ListActivities returns userID's activities newest-first, optionally
// filtered by date range.
func (db *DB) ListActivities(ctx context.Context, userID int64, f ActivityFilter) ([]Activity, error) {
query := `SELECT ` + activityColumns + ` FROM activities WHERE user_id = ?`
args := []any{userID}
if f.FromDate != "" {
query += ` AND start_time_utc >= ?`
args = append(args, f.FromDate)
}
if f.ToDate != "" {
query += ` AND start_time_utc <= ?`
args = append(args, f.ToDate+" 23:59:59")
}
query += ` ORDER BY start_time_utc DESC`
if f.Limit > 0 {
query += ` LIMIT ? OFFSET ?`
args = append(args, f.Limit, f.Offset)
}
rows, err := db.QueryContext(ctx, query, args...)
if err != nil {
return nil, fmt.Errorf("list activities for user %d: %w", userID, err)
}
defer rows.Close()
activities := []Activity{}
for rows.Next() {
a, err := scanActivity(rows)
if err != nil {
return nil, fmt.Errorf("scan activity row: %w", err)
}
activities = append(activities, a)
}
return activities, rows.Err()
}
// ActivityExists reports whether userID already has an activity with this
// garmin_activity_id stored.
func (db *DB) ActivityExists(ctx context.Context, userID, garminActivityID int64) (bool, error) {
var id int64
err := db.QueryRowContext(ctx, `SELECT id FROM activities WHERE user_id = ? AND garmin_activity_id = ?`, userID, garminActivityID).Scan(&id)
if err == sql.ErrNoRows {
return false, nil
}
if err != nil {
return false, fmt.Errorf("check activity %d exists for user %d: %w", garminActivityID, userID, err)
}
return true, nil
}
// LatestActivityStartTime returns userID's most recently started activity's
// start_time_utc, used to compute the incremental sync window.
func (db *DB) LatestActivityStartTime(ctx context.Context, userID int64) (string, bool, error) {
var t string
err := db.QueryRowContext(ctx, `SELECT start_time_utc FROM activities WHERE user_id = ? ORDER BY start_time_utc DESC LIMIT 1`, userID).Scan(&t)
if err == sql.ErrNoRows {
return "", false, nil
}
if err != nil {
return "", false, fmt.Errorf("latest activity start time for user %d: %w", userID, err)
}
return t, true, nil
}
// SetActivityDetails records that get_activity_details has been fetched for
// this activity, storing the raw response for future reprocessing.
func (db *DB) SetActivityDetails(ctx context.Context, userID, activityID int64, rawJSON string) error {
_, err := db.ExecContext(ctx, `
UPDATE activities SET details_fetched_at = datetime('now'), details_raw_json = ?, updated_at = datetime('now')
WHERE id = ? AND user_id = ?`, rawJSON, activityID, userID)
if err != nil {
return fmt.Errorf("set activity %d details for user %d: %w", activityID, userID, err)
}
return nil
}
// SetActivityWorkout stores the raw get_workout_by_id() response used to
// compute this activity's laps' target pace/HR bands.
func (db *DB) SetActivityWorkout(ctx context.Context, userID, activityID int64, rawJSON string) error {
_, err := db.ExecContext(ctx, `
UPDATE activities SET workout_raw_json = ?, updated_at = datetime('now')
WHERE id = ? AND user_id = ?`, rawJSON, activityID, userID)
if err != nil {
return fmt.Errorf("set activity %d workout for user %d: %w", activityID, userID, err)
}
return nil
}
// SetActivitySplitsFetched records that get_activity_splits has been fetched
// for this activity.
func (db *DB) SetActivitySplitsFetched(ctx context.Context, userID, activityID int64) error {
_, err := db.ExecContext(ctx, `
UPDATE activities SET splits_fetched_at = datetime('now'), updated_at = datetime('now')
WHERE id = ? AND user_id = ?`, activityID, userID)
if err != nil {
return fmt.Errorf("set activity %d splits fetched for user %d: %w", activityID, userID, err)
}
return nil
}
// ActivitiesMissingDetails returns userID's activities that haven't had
// get_activity_details/get_activity_splits fetched yet, for the lazy
// background detail-fill pass.
func (db *DB) ActivitiesMissingDetails(ctx context.Context, userID int64, limit int) ([]Activity, error) {
rows, err := db.QueryContext(ctx, `SELECT `+activityColumns+` FROM activities
WHERE user_id = ? AND (details_fetched_at IS NULL OR splits_fetched_at IS NULL)
ORDER BY start_time_utc DESC LIMIT ?`, userID, limit)
if err != nil {
return nil, fmt.Errorf("list activities missing details for user %d: %w", userID, err)
}
defer rows.Close()
activities := []Activity{}
for rows.Next() {
a, err := scanActivity(rows)
if err != nil {
return nil, fmt.Errorf("scan activity row: %w", err)
}
activities = append(activities, a)
}
return activities, rows.Err()
}
// CountActivitiesMissingDetails returns how many of userID's activities
// still need get_activity_details/get_activity_splits fetched, regardless
// of any per-call batch limit -- used to report overall remaining work.
func (db *DB) CountActivitiesMissingDetails(ctx context.Context, userID int64) (int, error) {
var n int
err := db.QueryRowContext(ctx, `SELECT COUNT(*) FROM activities
WHERE user_id = ? AND (details_fetched_at IS NULL OR splits_fetched_at IS NULL)`, userID).Scan(&n)
if err != nil {
return 0, fmt.Errorf("count activities missing details for user %d: %w", userID, err)
}
return n, nil
}
// ActivitiesMissingWorkout returns userID's activities that have a
// structured workout (WorkoutID set at initial upsert time, straight from
// Garmin's activity summary) but haven't had get_workout_by_id fetched yet.
// Independently queryable from ActivitiesMissingDetails: workout_id is
// known well before any detail fetch, and workout_raw_json is only ever
// set by SetActivityWorkout, so this also picks up an activity whose
// details were fetched successfully in some prior run but whose workout
// fetch failed back then -- ActivitiesMissingDetails would never surface
// that activity again (details_fetched_at/splits_fetched_at are already
// set), silently losing its target pace/HR bands forever without this.
func (db *DB) ActivitiesMissingWorkout(ctx context.Context, userID int64, limit int) ([]Activity, error) {
rows, err := db.QueryContext(ctx, `SELECT `+activityColumns+` FROM activities
WHERE user_id = ? AND workout_id IS NOT NULL AND workout_raw_json IS NULL
ORDER BY start_time_utc DESC LIMIT ?`, userID, limit)
if err != nil {
return nil, fmt.Errorf("list activities missing workout for user %d: %w", userID, err)
}
defer rows.Close()
activities := []Activity{}
for rows.Next() {
a, err := scanActivity(rows)
if err != nil {
return nil, fmt.Errorf("scan activity row: %w", err)
}
activities = append(activities, a)
}
return activities, rows.Err()
}
// CountActivitiesMissingWorkout returns how many of userID's activities
// still need get_workout_by_id fetched, regardless of any per-call batch
// limit -- used to report overall remaining work, mirroring
// CountActivitiesMissingDetails.
func (db *DB) CountActivitiesMissingWorkout(ctx context.Context, userID int64) (int, error) {
var n int
err := db.QueryRowContext(ctx, `SELECT COUNT(*) FROM activities
WHERE user_id = ? AND workout_id IS NOT NULL AND workout_raw_json IS NULL`, userID).Scan(&n)
if err != nil {
return 0, fmt.Errorf("count activities missing workout for user %d: %w", userID, err)
}
return n, nil
}