navidrome/persistence/sql_base_repository.go
Deluan 56a36e4da4 feat(persistence): log SQLite result codes on failed statements
SQLite reuses one message for errors that need different responses: "database
is locked" is both SQLITE_BUSY, which busy_timeout retries, and
SQLITE_BUSY_SNAPSHOT, which it can never retry because the transaction's read
snapshot is already stale. Reading only the message, the two are
indistinguishable, and a lock error seen in the wild could not be diagnosed
without guessing which one it was.

Add db.ErrorCodes to unwrap a sqlite3.Error and report its result and extended
result codes, and include them in the SQL error log. The helper lives in db
because that package already owns the driver, so persistence does not need to
import it. Constraint, readonly and disk-full errors share messages the same
way, so this applies to every failed statement, not just locks.
2026-07-29 08:49:17 -04:00

613 lines
20 KiB
Go

package persistence
import (
"context"
"crypto/md5"
"database/sql"
"errors"
"fmt"
"iter"
"reflect"
"regexp"
"strings"
"time"
. "github.com/Masterminds/squirrel"
"github.com/deluan/rest"
"github.com/navidrome/navidrome/conf"
"github.com/navidrome/navidrome/db"
"github.com/navidrome/navidrome/log"
"github.com/navidrome/navidrome/model"
id2 "github.com/navidrome/navidrome/model/id"
"github.com/navidrome/navidrome/model/request"
"github.com/navidrome/navidrome/utils/hasher"
"github.com/navidrome/navidrome/utils/slice"
"github.com/pocketbase/dbx"
)
// sqlRepository is the base repository for all SQL repositories. It provides common functions to interact with the DB.
// When creating a new repository using this base, you must:
//
// - Embed this struct.
// - Set ctx and db fields. ctx should be the context passed to the constructor method, usually obtained from the request
// - Call registerModel with the model instance and any possible filters.
// - If the model has a different table name than the default (lowercase of the model name), it should be set manually
// using the tableName field.
// - Sort mappings must be set with setSortMappings method. If a sort field is not in the map, it will be used as the name of the column.
//
// All fields in filters and sortMappings must be in snake_case. Only sorts and filters based on real field names or
// defined in the mappings will be allowed.
type sqlRepository struct {
ctx context.Context
tableName string
db dbx.Builder
// Do not set these fields manually, they are set by the registerModel method
filterMappings map[string]filterFunc
isFieldWhiteListed fieldWhiteListedFunc
// Do not set this field manually, it is set by the setSortMappings method
sortMappings map[string]string
}
const invalidUserId = "-1"
func loggedUser(ctx context.Context) *model.User {
if user, ok := request.UserFrom(ctx); !ok {
return &model.User{ID: invalidUserId}
} else {
return &user
}
}
// ownerFilter returns the predicate restricting access to rows owned by the logged-in user, for
// tables with a user_id column. It returns nil for admins and for headless/system contexts (invalid
// user), meaning "no ownership restriction". Callers should skip the WHERE clause when it is nil.
//
// The predicate uses an unqualified user_id, so it only works on queries where that column is
// unambiguous (no join introducing a second user_id).
func (r sqlRepository) ownerFilter() Sqlizer {
if usr := loggedUser(r.ctx); !usr.IsAdmin && usr.ID != invalidUserId {
return Eq{"user_id": usr.ID}
}
return nil
}
// addRestriction combines an optional caller predicate with the ownership filter, producing the
// WHERE clause for owner-scoped reads. For admins and headless contexts ownerFilter() is nil and
// only the caller's predicate (if any) remains.
func (r sqlRepository) addRestriction(sql ...Sqlizer) Sqlizer {
s := And{}
if len(sql) > 0 {
s = append(s, sql[0])
}
if owner := r.ownerFilter(); owner != nil {
s = append(s, owner)
}
return s
}
func (r *sqlRepository) registerModel(instance any, filters map[string]filterFunc) {
if r.tableName == "" {
r.tableName = strings.TrimPrefix(reflect.TypeOf(instance).String(), "*model.")
r.tableName = toSnakeCase(r.tableName)
}
r.tableName = strings.ToLower(r.tableName)
r.isFieldWhiteListed = registerModelWhiteList(instance)
r.filterMappings = filters
}
// setSortMappings sets the mappings for the sort fields. If the sort field is not in the map, it will be used as is.
//
// If PreferSortTags is enabled, it will map the order fields to the corresponding sort expression,
// which gives precedence to sort tags.
// Ex: order_title => (coalesce(nullif(sort_title,”),order_title) collate nocase)
// To avoid performance issues, indexes should be created for these sort expressions
//
// NOTE: if an individual item has spaces, it should be wrapped in parentheses. For example,
// you should write "(lyrics != '[]')". This prevents the item being split unexpectedly.
// Without parentheses, "lyrics != '[]'" would be mapped as simply "lyrics"
func (r *sqlRepository) setSortMappings(mappings map[string]string, tableName ...string) {
tn := r.tableName
if len(tableName) > 0 {
tn = tableName[0]
}
if conf.Server.PreferSortTags {
for k, v := range mappings {
v = mapSortOrder(tn, v)
mappings[k] = v
}
}
r.sortMappings = mappings
}
func (r sqlRepository) newSelect(options ...model.QueryOptions) SelectBuilder {
sq := Select().From(r.tableName)
if len(options) > 0 {
r.resetSeededRandom(options)
sq = r.applyOptions(sq, options...)
sq = r.applyFilters(sq, options...)
}
return sq
}
func (r sqlRepository) applyOptions(sq SelectBuilder, options ...model.QueryOptions) SelectBuilder {
if len(options) > 0 {
if options[0].Max > 0 {
sq = sq.Limit(uint64(options[0].Max))
}
if options[0].Offset > 0 {
sq = sq.Offset(uint64(options[0].Offset))
}
if options[0].Sort != "" {
sq = sq.OrderBy(r.buildSortOrder(options[0].Sort, options[0].Order))
}
}
return sq
}
// TODO Change all sortMappings to have a consistent case
func (r sqlRepository) sortMapping(sort string) string {
if mapping, ok := r.sortMappings[sort]; ok {
return mapping
}
if mapping, ok := r.sortMappings[toCamelCase(sort)]; ok {
return mapping
}
sort = toSnakeCase(sort)
if mapping, ok := r.sortMappings[sort]; ok {
return mapping
}
return sort
}
func (r sqlRepository) buildSortOrder(sort, order string) string {
sort = r.sortMapping(sort)
order = strings.ToLower(strings.TrimSpace(order))
var reverseOrder string
if order == "desc" {
reverseOrder = "asc"
} else {
order = "asc"
reverseOrder = "desc"
}
parts := strings.FieldsFunc(sort, splitFunc(','))
newSort := make([]string, 0, len(parts))
for _, p := range parts {
f := strings.FieldsFunc(p, splitFunc(' '))
newField := make([]string, 1, len(f))
newField[0] = f[0]
if len(f) == 1 {
newField = append(newField, order)
} else {
if f[1] == "asc" {
newField = append(newField, order)
} else {
newField = append(newField, reverseOrder)
}
}
newSort = append(newSort, strings.Join(newField, " "))
}
return strings.Join(newSort, ", ")
}
func splitFunc(delimiter rune) func(c rune) bool {
open := 0
return func(c rune) bool {
if c == '(' {
open++
return false
}
if open > 0 {
if c == ')' {
open--
}
return false
}
return c == delimiter
}
}
func (r sqlRepository) applyFilters(sq SelectBuilder, options ...model.QueryOptions) SelectBuilder {
if len(options) > 0 && options[0].Filters != nil {
sq = sq.Where(options[0].Filters)
}
return sq
}
// libraryIdFilter is a filter function to be added to resources that have a library_id column.
func libraryIdFilter(_ string, value any) Sqlizer {
return Eq{"library_id": value}
}
// applyLibraryFilter adds library filtering to queries for tables that have a library_id column
// This ensures users only see content from libraries they have access to
func (r sqlRepository) applyLibraryFilter(sq SelectBuilder, tableName ...string) SelectBuilder {
user := loggedUser(r.ctx)
// If the user is an admin, or the user ID is invalid (e.g., when no user is logged in), skip the library filter
if user.IsAdmin || user.ID == invalidUserId {
return sq
}
// A non-admin granted every library sees everything the subquery would return, so applying it is
// pure overhead. Skip it in that case (same fast path admins get).
if visible, err := r.visibleLibraryIDs(); err == nil && r.userSeesAllLibraries(visible) {
return sq
}
table := r.tableName
if len(tableName) > 0 {
table = tableName[0]
}
// Get user's accessible library IDs
// Use subquery to filter by user's library access
return sq.Where(Expr(table+".library_id IN ("+
"SELECT ul.library_id FROM user_library ul WHERE ul.user_id = ?)", user.ID))
}
// userSeesAllLibraries reports whether the visible set already covers every library, so a
// library filter would exclude nothing.
func (r sqlRepository) userSeesAllLibraries(visible []int) bool {
user := loggedUser(r.ctx)
if user.IsAdmin || user.ID == invalidUserId {
return true // visible is the whole library table
}
total, err := NewLibraryRepository(r.ctx, r.db).CountAll()
if err != nil || total == 0 {
return false
}
return int64(len(visible)) == total
}
// visibleLibraryIDs returns the libraries the current user can see: all libraries for admin and
// headless processes, otherwise the user's granted libraries.
func (r sqlRepository) visibleLibraryIDs() ([]int, error) {
user := loggedUser(r.ctx)
if user.IsAdmin || user.ID == invalidUserId {
var ids []int
err := r.queryAllSlice(Select("id").From("library"), &ids)
return ids, err
}
return slice.Map(user.Libraries, func(lib model.Library) int { return lib.ID }), nil
}
func (r sqlRepository) seedKey() string {
// Seed keys must be all lowercase, or else SQLite3 will encode it, making it not match the seed
// used in the query. Hashing the user ID and converting it to a hex string will do the trick
userIDHash := md5.Sum([]byte(loggedUser(r.ctx).ID))
return fmt.Sprintf("%s|%x", r.tableName, userIDHash)
}
func (r sqlRepository) resetSeededRandom(options []model.QueryOptions) {
if len(options) == 0 || options[0].Sort != "random" {
return
}
options[0].Sort = fmt.Sprintf("SEEDEDRAND('%s', %s.id)", r.seedKey(), r.tableName)
if options[0].Seed != "" {
hasher.SetSeed(r.seedKey(), options[0].Seed)
return
}
if options[0].Offset == 0 {
hasher.Reseed(r.seedKey())
}
}
func (r sqlRepository) executeSQL(sq Sqlizer) (int64, error) {
query, args, err := r.toSQL(sq)
if err != nil {
return 0, err
}
start := time.Now()
var c int64
res, err := r.db.NewQuery(query).Bind(args).WithContext(r.ctx).Execute()
if res != nil {
c, _ = res.RowsAffected()
}
r.logSQL(query, args, err, c, start)
if err != nil {
if err.Error() != "LastInsertId is not supported by this driver" {
return 0, err
}
}
return c, err
}
var placeholderRegex = regexp.MustCompile(`\?`)
func (r sqlRepository) toSQL(sq Sqlizer) (string, dbx.Params, error) {
query, args, err := sq.ToSql()
if err != nil {
return "", nil, err
}
// Replace query placeholders with named params
params := make(dbx.Params, len(args))
counter := 0
result := placeholderRegex.ReplaceAllStringFunc(query, func(_ string) string {
p := fmt.Sprintf("p%d", counter)
params[p] = args[counter]
counter++
return "{:" + p + "}"
})
return result, params, nil
}
func (r sqlRepository) queryOne(sq Sqlizer, response any) error {
query, args, err := r.toSQL(sq)
if err != nil {
return err
}
start := time.Now()
err = r.db.NewQuery(query).Bind(args).WithContext(r.ctx).One(response)
if errors.Is(err, sql.ErrNoRows) {
r.logSQL(query, args, nil, 0, start)
return model.ErrNotFound
}
r.logSQL(query, args, err, 1, start)
return err
}
// wrapCursor adapts a cursor over db rows into one over their models. toModel pulls out the row's
// embedded model, which a type parameter can't reach on its own.
func wrapCursor[D, T any](cursor iter.Seq2[D, error], toModel func(D) *T) iter.Seq2[T, error] {
return func(yield func(T, error) bool) {
for row, err := range cursor {
m := toModel(row)
if m == nil {
var zero T
yield(zero, fmt.Errorf("unexpected nil %T (%v): %w", zero, row, err))
return
}
if !yield(*m, err) || err != nil {
return
}
}
}
}
// queryWithStableResults is a helper function to execute a query and return an iterator that will yield its results
// from a cursor, guaranteeing that the results will be stable, even if the underlying data changes.
func queryWithStableResults[T any](r sqlRepository, sq SelectBuilder, options ...model.QueryOptions) (iter.Seq2[T, error], error) {
if len(options) > 0 && options[0].Offset > 0 {
sq = r.optimizePagination(sq, options[0])
}
query, args, err := r.toSQL(sq)
if err != nil {
return nil, err
}
start := time.Now()
rows, err := r.db.NewQuery(query).Bind(args).WithContext(r.ctx).Rows()
r.logSQL(query, args, err, -1, start)
if err != nil {
return nil, err
}
return func(yield func(T, error) bool) {
defer rows.Close()
for rows.Next() {
var row T
err := rows.ScanStruct(&row)
if !yield(row, err) || err != nil {
return
}
}
if err := rows.Err(); err != nil {
var empty T
yield(empty, err)
}
}, nil
}
func (r sqlRepository) queryAll(sq SelectBuilder, response any, options ...model.QueryOptions) error {
if len(options) > 0 && options[0].Offset > 0 {
sq = r.optimizePagination(sq, options[0])
}
query, args, err := r.toSQL(sq)
if err != nil {
return err
}
start := time.Now()
err = r.db.NewQuery(query).Bind(args).WithContext(r.ctx).All(response)
if errors.Is(err, sql.ErrNoRows) {
r.logSQL(query, args, nil, -1, start)
return model.ErrNotFound
}
r.logSQL(query, args, err, int64(reflect.ValueOf(response).Elem().Len()), start)
return err
}
// queryAllSlice is a helper function to query a single column and return the result in a slice
func (r sqlRepository) queryAllSlice(sq SelectBuilder, response any) error {
query, args, err := r.toSQL(sq)
if err != nil {
return err
}
start := time.Now()
err = r.db.NewQuery(query).Bind(args).WithContext(r.ctx).Column(response)
if errors.Is(err, sql.ErrNoRows) {
r.logSQL(query, args, nil, -1, start)
return model.ErrNotFound
}
r.logSQL(query, args, err, int64(reflect.ValueOf(response).Elem().Len()), start)
return err
}
// optimizePagination uses a less inefficient pagination, by not using OFFSET.
// See https://gist.github.com/ssokolow/262503
func (r sqlRepository) optimizePagination(sq SelectBuilder, options model.QueryOptions) SelectBuilder {
if options.Offset > conf.Server.DevOffsetOptimize {
sq = sq.RemoveOffset()
rowidSq := sq.RemoveColumns().Columns(r.tableName + ".rowid")
rowidSq = rowidSq.Limit(uint64(options.Offset))
rowidSql, args, _ := rowidSq.ToSql()
sq = sq.Where(r.tableName+".rowid not in ("+rowidSql+")", args...)
}
return sq
}
func (r sqlRepository) exists(cond Sqlizer) (bool, error) {
existsQuery := Select("count(*) as exist").From(r.tableName).Where(cond)
var res struct{ Exist int64 }
err := r.queryOne(existsQuery, &res)
return res.Exist > 0, err
}
// updateOwned performs an atomic, ownership-restricted update of the row identified by id, for
// repositories whose table has a user_id column. Non-admins can only update rows they own: the
// ownership predicate is part of the UPDATE's WHERE clause, so a row owned by another user simply
// does not match and no write happens. Ownership itself is immutable here: user_id is never written,
// so no caller (admin included) can reassign a row to a different owner via an update. Unlike put,
// it never falls through to an INSERT, so a non-matching id never creates a row.
//
// When the update matches no row it classifies the failure: if the row exists but is owned by
// another user it returns rest.ErrPermissionDenied, otherwise rest.ErrNotFound. The write itself is
// still atomic; the extra lookup happens only on the failure path (count == 0), where no write
// occurred, so there is no TOCTOU on the update.
func (r sqlRepository) updateOwned(id string, m any, colsToUpdate ...string) error {
values, err := toSQLArgs(m)
if err != nil {
return fmt.Errorf("error preparing values to write to DB: %w", err)
}
updateValues := filterUpdateValues(values, id, colsToUpdate...)
delete(updateValues, "user_id") // ownership is immutable on update
update := Update(r.tableName).Where(r.addRestriction(Eq{"id": id})).SetMap(updateValues)
count, err := r.executeSQL(update)
if err != nil {
return err
}
if count == 0 {
return r.classifyOwnedWriteMiss(id)
}
return nil
}
// deleteOwned performs an atomic, ownership-restricted delete of the row identified by id, for
// repositories whose table has a user_id column. Non-admins can only delete rows they own: the
// ownership predicate is part of the DELETE's WHERE clause, so a row owned by another user simply
// does not match and is left untouched. The failure path mirrors updateOwned (see
// classifyOwnedWriteMiss), so there is no TOCTOU on the delete.
func (r sqlRepository) deleteOwned(id string) error {
count, err := r.executeSQL(Delete(r.tableName).Where(r.addRestriction(Eq{"id": id})))
if err != nil {
return err
}
if count == 0 {
return r.classifyOwnedWriteMiss(id)
}
return nil
}
// classifyOwnedWriteMiss explains why an ownership-filtered write (updateOwned/deleteOwned) matched
// no row: rest.ErrPermissionDenied if the row exists but is owned by another user, otherwise
// rest.ErrNotFound. It runs only on the failure path (count == 0), where no write occurred.
func (r sqlRepository) classifyOwnedWriteMiss(id string) error {
exists, err := r.exists(Eq{"id": id})
if err != nil {
return err
}
if exists {
return rest.ErrPermissionDenied
}
return rest.ErrNotFound
}
func (r sqlRepository) count(countQuery SelectBuilder, options ...model.QueryOptions) (int64, error) {
countQuery = countQuery.
RemoveColumns().Columns("count(distinct " + r.tableName + ".id) as count").
RemoveOffset().RemoveLimit().
OrderBy(r.tableName + ".id"). // To remove any ORDER BY clause that could slow down the query
From(r.tableName)
countQuery = r.applyFilters(countQuery, options...)
var res struct{ Count int64 }
err := r.queryOne(countQuery, &res)
return res.Count, err
}
func (r sqlRepository) putByMatch(filter Sqlizer, id string, m any, colsToUpdate ...string) (string, error) {
if id != "" {
return r.put(id, m, colsToUpdate...)
}
existsQuery := r.newSelect().Columns("id").From(r.tableName).Where(filter)
var res struct{ ID string }
err := r.queryOne(existsQuery, &res)
if err != nil && !errors.Is(err, model.ErrNotFound) {
return "", err
}
return r.put(res.ID, m, colsToUpdate...)
}
// filterUpdateValues selects, from a marshaled column map, the values to write in an UPDATE on the
// row identified by id: only the requested colsToUpdate (or all columns when none are specified),
// dropping columns that must never be overwritten on update (created_at, birth_time).
func filterUpdateValues(values map[string]any, id string, colsToUpdate ...string) map[string]any {
updateValues := map[string]any{}
// This is a map of the columns that need to be updated, if specified
c2upd := slice.ToMap(colsToUpdate, func(s string) (string, struct{}) {
return toSnakeCase(s), struct{}{}
})
for k, v := range values {
if _, found := c2upd[k]; len(c2upd) == 0 || found {
updateValues[k] = v
}
}
updateValues["id"] = id
delete(updateValues, "created_at")
// To avoid updating the media_file birth_time on each scan. Not the best solution, but it works for now
// TODO move to mediafile_repository when each repo has its own upsert method
delete(updateValues, "birth_time")
return updateValues
}
func (r sqlRepository) put(id string, m any, colsToUpdate ...string) (newId string, err error) {
values, err := toSQLArgs(m)
if err != nil {
return "", fmt.Errorf("error preparing values to write to DB: %w", err)
}
// If there's an ID, try to update first
if id != "" {
update := Update(r.tableName).Where(Eq{"id": id}).SetMap(filterUpdateValues(values, id, colsToUpdate...))
count, err := r.executeSQL(update)
if err != nil {
return "", err
}
if count > 0 {
return id, nil
}
}
// If it does not have an ID OR the ID was not found (when it is a new record with predefined id)
if id == "" {
id = id2.NewRandom()
values["id"] = id
}
insert := Insert(r.tableName).SetMap(values)
_, err = r.executeSQL(insert)
return id, err
}
func (r sqlRepository) delete(cond Sqlizer) error {
del := Delete(r.tableName).Where(cond)
_, err := r.executeSQL(del)
if errors.Is(err, sql.ErrNoRows) {
return model.ErrNotFound
}
return err
}
func (r sqlRepository) logSQL(sql string, args dbx.Params, err error, rowsAffected int64, start time.Time) {
elapsed := time.Since(start)
fields := []any{r.ctx, "SQL: `" + sql + "`", "args", args, "rowsAffected", rowsAffected, "elapsedTime", elapsed}
if err == nil || errors.Is(err, context.Canceled) {
log.Trace(append(fields, err)...)
return
}
// The result codes separate errors that share a message, notably SQLITE_BUSY from
// SQLITE_BUSY_SNAPSHOT, which no busy_timeout can retry.
if code, extended, ok := db.ErrorCodes(err); ok {
fields = append(fields, "sqliteCode", code, "sqliteExtended", extended)
}
log.Error(append(fields, err)...)
}