Files
silo-server/internal/userstore/pgstore/setting_values.go
T
QuickandClaude Opus 5 05af63ea2b feat(settings): add canonical typed storage for the settings contract
The cross-platform settings contract needs one typed store behind it before a
resolver, routes or a migration can exist. This adds that storage to both
user-store backends and holds them to identical behavior.

PostgreSQL gets user_setting_values with the scope CHECK constraints, the five
partial unique indexes that enforce one explicit value per identity, and the
covering indexes the one-query read path needs, plus user_setting_mutations for
mutation_id idempotency and the inert user_setting_migration_rejects audit
table. The per-user SQLite store gets the same shape minus user_id, since that
database is already user-scoped.

The UserStore interface grows the typed operations: read one explicit value at
one scope, collect every candidate row for a resolution request in a single
query, upsert with a revision increment, unset, and the idempotency receipt
operations. The resolution read deliberately returns unranked candidates so the
resolver can rank in Go — one query per request, never one per scope, which the
pgx query-count test pins.

Delete behavior is application-enforced. Neither backend can inherit it from
constraints: the SQLite store declares no foreign keys, and library, series and
device columns are not FK targets in Postgres either. Profile deletion cascades
to profile-anchored values while account scope survives, forgetting a device
clears its profile_device values alongside the legacy overrides, and the
library/series purges remove only what is scoped to that entity.

The shared conformance suite covers all of it, including the set-versus-unset
distinction for false, 0, "" and null, so a divergence between the two backends
fails a test rather than reaching a client.

Part of #376

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-07-27 01:22:23 +00:00

367 lines
12 KiB
Go

package pgstore
import (
"context"
"encoding/json"
"fmt"
"time"
"github.com/jackc/pgx/v5"
"github.com/Silo-Server/silo-server/internal/settingscontract"
"github.com/Silo-Server/silo-server/internal/userstore"
)
// settingValueColumns is the projection every read shares, in the order
// scanSettingValue expects.
const settingValueColumns = `key, scope, profile_id, device_id, library_id, series_id,
value, revision, created_at, updated_at`
// settingConflictTargets maps a scope to the partial unique index that enforces
// one explicit value per identity. The upsert names the matching target so a
// repeated write updates its own row rather than inserting a duplicate.
var settingConflictTargets = map[settingscontract.Scope]string{
settingscontract.ScopeAccount: "(user_id, key) WHERE scope = 'account'",
settingscontract.ScopeProfile: "(user_id, profile_id, key) WHERE scope = 'profile'",
settingscontract.ScopeProfileDevice: "(user_id, profile_id, device_id, key) WHERE scope = 'profile_device'",
settingscontract.ScopeProfileLibrary: "(user_id, profile_id, library_id, key) WHERE scope = 'profile_library'",
settingscontract.ScopeProfileSeries: "(user_id, profile_id, series_id, key) WHERE scope = 'profile_series'",
}
// settingIdentityPredicate returns the WHERE fragment and bind arguments that
// address exactly one row. Every scope compares only the columns it populates,
// so no clause ever has to reason about NULL equality.
func settingIdentityPredicate(userID int, id userstore.SettingIdentity) (string, []any) {
args := []any{userID, id.Key, string(id.Scope)}
clause := "user_id = $1 AND key = $2 AND scope = $3"
switch id.Scope {
case settingscontract.ScopeProfile:
args = append(args, id.ProfileID)
clause += " AND profile_id = $4"
case settingscontract.ScopeProfileDevice:
args = append(args, id.ProfileID, id.DeviceID)
clause += " AND profile_id = $4 AND device_id = $5"
case settingscontract.ScopeProfileLibrary:
args = append(args, id.ProfileID, id.LibraryID)
clause += " AND profile_id = $4 AND library_id = $5"
case settingscontract.ScopeProfileSeries:
args = append(args, id.ProfileID, id.SeriesID)
clause += " AND profile_id = $4 AND series_id = $5"
}
return clause, args
}
func (s *PostgresUserStore) GetSettingValue(
ctx context.Context,
id userstore.SettingIdentity,
) (*userstore.SettingValue, error) {
if err := id.Validate(); err != nil {
return nil, err
}
clause, args := settingIdentityPredicate(s.userID, id)
row := s.pool.QueryRow(ctx,
"SELECT "+settingValueColumns+" FROM user_setting_values WHERE "+clause,
args...,
)
value, err := scanSettingValue(row)
if err == pgx.ErrNoRows {
return nil, nil
}
if err != nil {
return nil, fmt.Errorf("getting setting value %q at %s: %w", id.Key, id.Scope, err)
}
return &value, nil
}
// ListSettingValuesForResolution collects every candidate row for a resolution
// request in one query. The predicate covers all five scopes at once: ranking by
// each definition's resolution order happens in Go, so a four-scope chain still
// costs one round trip and one index scan rather than four lookups per key.
func (s *PostgresUserStore) ListSettingValuesForResolution(
ctx context.Context,
query userstore.SettingResolutionQuery,
) ([]userstore.SettingValue, error) {
q := query.Normalized()
if len(q.Keys) == 0 {
return nil, nil
}
rows, err := s.pool.Query(ctx, `
SELECT `+settingValueColumns+`
FROM user_setting_values
WHERE user_id = $1
AND key = ANY($2::text[])
AND (
scope = 'account'
OR (
profile_id = $3
AND (
scope = 'profile'
OR (scope = 'profile_device' AND device_id = $4)
OR (scope = 'profile_library' AND library_id = ANY($5::int[]))
OR (scope = 'profile_series' AND series_id = ANY($6::text[]))
)
)
)
ORDER BY key, scope, COALESCE(profile_id, ''), COALESCE(device_id, ''),
COALESCE(library_id, 0), COALESCE(series_id, '')`,
s.userID, q.Keys, q.ProfileID, q.DeviceID, q.LibraryIDs, q.SeriesIDs,
)
if err != nil {
return nil, fmt.Errorf("listing setting values for resolution: %w", err)
}
defer rows.Close()
var values []userstore.SettingValue
for rows.Next() {
value, err := scanSettingValue(rows)
if err != nil {
return nil, fmt.Errorf("scanning setting value: %w", err)
}
values = append(values, value)
}
return values, rows.Err()
}
func (s *PostgresUserStore) UpsertSettingValue(
ctx context.Context,
id userstore.SettingIdentity,
value json.RawMessage,
) (*userstore.SettingValue, error) {
if err := id.Validate(); err != nil {
return nil, err
}
if err := userstore.ValidateSettingValueJSON(value); err != nil {
return nil, err
}
target, ok := settingConflictTargets[id.Scope]
if !ok {
return nil, fmt.Errorf("%w: %q has no storage identity", userstore.ErrInvalidSettingIdentity, id.Scope)
}
row := s.pool.QueryRow(ctx, fmt.Sprintf(`
INSERT INTO user_setting_values
(user_id, key, scope, profile_id, device_id, library_id, series_id, value)
VALUES ($1, $2, $3, $4, $5, $6, $7, $8)
ON CONFLICT %s DO UPDATE SET
value = excluded.value,
revision = user_setting_values.revision + 1,
updated_at = now()
RETURNING %s`, target, settingValueColumns),
s.userID, id.Key, string(id.Scope),
nullableText(id.ProfileID), nullableText(id.DeviceID),
nullableInt(id.LibraryID), nullableText(id.SeriesID),
[]byte(value),
)
stored, err := scanSettingValue(row)
if err != nil {
return nil, fmt.Errorf("upserting setting value %q at %s: %w", id.Key, id.Scope, err)
}
return &stored, nil
}
func (s *PostgresUserStore) DeleteSettingValue(ctx context.Context, id userstore.SettingIdentity) (bool, error) {
if err := id.Validate(); err != nil {
return false, err
}
clause, args := settingIdentityPredicate(s.userID, id)
tag, err := s.pool.Exec(ctx, "DELETE FROM user_setting_values WHERE "+clause, args...)
if err != nil {
return false, fmt.Errorf("deleting setting value %q at %s: %w", id.Key, id.Scope, err)
}
return tag.RowsAffected() > 0, nil
}
// DeleteSettingValuesForProfile removes every profile-anchored value for one
// profile. Account-scope rows carry a NULL profile_id and survive, which is what
// deleting one household member out of an account has to mean.
func (s *PostgresUserStore) DeleteSettingValuesForProfile(ctx context.Context, profileID string) (int64, error) {
tag, err := s.pool.Exec(ctx,
"DELETE FROM user_setting_values WHERE user_id = $1 AND profile_id = $2",
s.userID, profileID,
)
if err != nil {
return 0, fmt.Errorf("deleting setting values for profile %q: %w", profileID, err)
}
return tag.RowsAffected(), nil
}
func (s *PostgresUserStore) DeleteSettingValuesForDevice(ctx context.Context, profileID, deviceID string) (int64, error) {
tag, err := s.pool.Exec(ctx, `
DELETE FROM user_setting_values
WHERE user_id = $1 AND scope = 'profile_device' AND profile_id = $2 AND device_id = $3`,
s.userID, profileID, deviceID,
)
if err != nil {
return 0, fmt.Errorf("deleting setting values for device %q: %w", deviceID, err)
}
return tag.RowsAffected(), nil
}
func (s *PostgresUserStore) DeleteSettingValuesForLibrary(ctx context.Context, libraryID int) (int64, error) {
tag, err := s.pool.Exec(ctx, `
DELETE FROM user_setting_values
WHERE user_id = $1 AND scope = 'profile_library' AND library_id = $2`,
s.userID, libraryID,
)
if err != nil {
return 0, fmt.Errorf("deleting setting values for library %d: %w", libraryID, err)
}
return tag.RowsAffected(), nil
}
func (s *PostgresUserStore) DeleteSettingValuesForSeries(ctx context.Context, seriesID string) (int64, error) {
tag, err := s.pool.Exec(ctx, `
DELETE FROM user_setting_values
WHERE user_id = $1 AND scope = 'profile_series' AND series_id = $2`,
s.userID, seriesID,
)
if err != nil {
return 0, fmt.Errorf("deleting setting values for series %q: %w", seriesID, err)
}
return tag.RowsAffected(), nil
}
func (s *PostgresUserStore) GetSettingMutation(
ctx context.Context,
mutationID string,
) (*userstore.SettingMutationRecord, error) {
row := s.pool.QueryRow(ctx, `
SELECT mutation_id, request_hash, result, created_at, expires_at
FROM user_setting_mutations
WHERE user_id = $1 AND mutation_id = $2`,
s.userID, mutationID,
)
record, err := scanSettingMutation(row)
if err == pgx.ErrNoRows {
return nil, nil
}
if err != nil {
return nil, fmt.Errorf("getting setting mutation %q: %w", mutationID, err)
}
return &record, nil
}
// PutSettingMutation never overwrites a receipt: DO NOTHING plus a second read
// keeps a replayed mutation_id answering with the result the first attempt
// produced, which is what makes a client's retry idempotent rather than a
// silent re-run.
func (s *PostgresUserStore) PutSettingMutation(
ctx context.Context,
record userstore.SettingMutationRecord,
) (userstore.SettingMutationRecord, bool, error) {
if err := record.Validate(); err != nil {
return userstore.SettingMutationRecord{}, false, err
}
row := s.pool.QueryRow(ctx, `
INSERT INTO user_setting_mutations (user_id, mutation_id, request_hash, result, expires_at)
VALUES ($1, $2, $3, $4, $5)
ON CONFLICT (user_id, mutation_id) DO NOTHING
RETURNING mutation_id, request_hash, result, created_at, expires_at`,
s.userID, record.MutationID, record.RequestHash, []byte(record.Result), record.ExpiresAt,
)
stored, err := scanSettingMutation(row)
if err == nil {
return stored, true, nil
}
if err != pgx.ErrNoRows {
return userstore.SettingMutationRecord{}, false, fmt.Errorf("recording setting mutation %q: %w", record.MutationID, err)
}
existing, err := s.GetSettingMutation(ctx, record.MutationID)
if err != nil {
return userstore.SettingMutationRecord{}, false, err
}
if existing == nil {
// The conflicting row was swept between the insert and this read; the
// caller can safely retry rather than receive a phantom conflict.
return userstore.SettingMutationRecord{}, false, fmt.Errorf(
"recording setting mutation %q: conflicting receipt disappeared", record.MutationID)
}
return *existing, false, nil
}
func (s *PostgresUserStore) DeleteExpiredSettingMutations(ctx context.Context, before time.Time) (int64, error) {
tag, err := s.pool.Exec(ctx,
"DELETE FROM user_setting_mutations WHERE user_id = $1 AND expires_at <= $2",
s.userID, before,
)
if err != nil {
return 0, fmt.Errorf("sweeping expired setting mutations: %w", err)
}
return tag.RowsAffected(), nil
}
// pgxRow is the subset of pgx.Row and pgx.Rows the scan helpers need.
type pgxRow interface {
Scan(dest ...any) error
}
func scanSettingValue(row pgxRow) (userstore.SettingValue, error) {
var (
value userstore.SettingValue
scope string
profileID *string
deviceID *string
libraryID *int
seriesID *string
raw []byte
createdAt time.Time
updatedAt time.Time
)
if err := row.Scan(
&value.Key, &scope, &profileID, &deviceID, &libraryID, &seriesID,
&raw, &value.Revision, &createdAt, &updatedAt,
); err != nil {
return userstore.SettingValue{}, err
}
value.Scope = settingscontract.Scope(scope)
if profileID != nil {
value.ProfileID = *profileID
}
if deviceID != nil {
value.DeviceID = *deviceID
}
if libraryID != nil {
value.LibraryID = *libraryID
}
if seriesID != nil {
value.SeriesID = *seriesID
}
value.Value = json.RawMessage(raw)
value.CreatedAt = timeToString(createdAt)
value.UpdatedAt = timeToString(updatedAt)
return value, nil
}
func scanSettingMutation(row pgxRow) (userstore.SettingMutationRecord, error) {
var (
record userstore.SettingMutationRecord
raw []byte
)
if err := row.Scan(
&record.MutationID, &record.RequestHash, &raw, &record.CreatedAt, &record.ExpiresAt,
); err != nil {
return userstore.SettingMutationRecord{}, err
}
record.Result = json.RawMessage(raw)
record.CreatedAt = record.CreatedAt.UTC()
record.ExpiresAt = record.ExpiresAt.UTC()
return record, nil
}
func nullableText(value string) *string {
if value == "" {
return nil
}
return &value
}
func nullableInt(value int) *int {
if value == 0 {
return nil
}
return &value
}