aboutsummaryrefslogtreecommitdiff
path: root/select.go
diff options
context:
space:
mode:
Diffstat (limited to 'select.go')
-rw-r--r--select.go307
1 files changed, 185 insertions, 122 deletions
diff --git a/select.go b/select.go
index 35c0671..d3a2195 100644
--- a/select.go
+++ b/select.go
@@ -18,54 +18,12 @@ import (
// according to the column names reported by the database as part of the result set.
//
// An error is returned if any column name in the result set does not correspond to an addressable field in R.
-func (s Store[R]) Select(ctx context.Context, db Handle, query string, args ...any) ([]R, error) {
+// Errors can be retrieved through the methods on type [Selection].
+func (s Store[R]) Select(ctx context.Context, db Handle, query string, args ...any) Selection[R] {
// NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
// Any expression that does not depend on type R should be factored out into a reusable function.
- rows, indexes, err := startSelectQuery(ctx, db, s.plan, query, args...)
- if err != nil {
- return nil, err
- }
-
- var result []R
- slots := make([]any, len(indexes))
- for rows.Next() {
- var target *R
- result, target = growRecordSlice(result)
- err = collectRow(rows, s.plan, reflect.ValueOf(target).Elem(), slots, indexes)
- if err != nil {
- return nil, err
- }
- }
-
- return result, newIOError(err, "Rows.Err", rows.Err())
-}
-
-// Appends an empty R to the slice and returns a pointer to it, as well as the updated slice.
-// It is more efficient to write:
-//
-// var result []R
-// for rows.Next() {
-// var target *R
-// result, target = growRecordSlice(result)
-// doSomethingWith(rows, reflect.ValueOf(target).Elem())
-// }
-//
-// Instead of the more obvious:
-//
-// var result []R
-// for rows.Next() {
-// var target R
-// doSomethingWith(rows, reflect.ValueOf(&target).Elem())
-// result = append(result, target)
-// }
-//
-// In the second phrasing, `target` escapes to the heap because of `reflect.ValueOf(&target)`,
-// causing an additional allocation for `target` as well as a memcpy of `target` during `append()`.
-func growRecordSlice[R any](records []R) (newRecords []R, target *R) {
- var zero R
- newRecords = append(records, zero)
- return newRecords, &newRecords[len(newRecords)-1]
+ return Selection[R]{startSelectQuery(ctx, db, s.plan, query, args...)}
}
// SelectWhere is like [Store.Select], but you only provide the part of the SELECT query that comes after the WHERE.
@@ -81,39 +39,24 @@ func growRecordSlice[R any](records []R) (newRecords []R, target *R) {
// Besides a condition for the WHERE clause, it may contain additional clauses, such as ORDER BY or LIMIT.
//
// Returns an error if [NewStore] was called without the [TableNameIs] option, which is required to generate a query for this method.
-func (s Store[R]) SelectWhere(ctx context.Context, db Handle, partialQuery string, args ...any) ([]R, error) {
+// Errors can be retrieved through the methods on type [Selection].
+func (s Store[R]) SelectWhere(ctx context.Context, db Handle, partialQuery string, args ...any) Selection[R] {
// NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
// Any expression that does not depend on type R should be factored out into a reusable function.
- rows, indexes, err := startSelectWhereQuery(ctx, db, s.plan, partialQuery, args...)
- if err != nil {
- return nil, err
- }
-
- var result []R
- slots := make([]any, len(indexes))
- for rows.Next() {
- var target *R
- result, target = growRecordSlice(result)
- err = collectRow(rows, s.plan, reflect.ValueOf(target).Elem(), slots, indexes)
- if err != nil {
- return nil, err
- }
- }
-
- return result, newIOError(err, "Rows.Err", rows.Err())
+ return Selection[R]{startSelectWhereQuery(ctx, db, s.plan, partialQuery, args...)}
}
-func startSelectQuery(ctx context.Context, db Handle, plan plan, query string, args ...any) (handle.Rows, [][]int, error) {
+func startSelectQuery(ctx context.Context, db Handle, plan plan, query string, args ...any) selection {
rows, err := db.OblastQuery(ctx, query, args)
if err != nil {
- return nil, nil, fmt.Errorf("during Query(): %w", err)
+ return selection{Err: fmt.Errorf("during Query(): %w", err)}
}
columnNames, err := rows.Columns()
if err != nil {
err = fmt.Errorf("during rows.Columns(): %w", err)
- return nil, nil, newIOError(err, "Rows.Close", rows.Close())
+ return selection{Err: newIOError(err, "Rows.Close", rows.Close())}
}
indexes := make([][]int, len(columnNames))
for idx, columnName := range columnNames {
@@ -124,38 +67,35 @@ func startSelectQuery(ctx context.Context, db Handle, plan plan, query string, a
"result has column %q in position %d, but no field in type %s has `db:%[1]q`",
columnName, idx, plan.TypeName,
)
- return nil, nil, newIOError(err, "Rows.Close", rows.Close())
+ return selection{Err: newIOError(err, "Rows.Close", rows.Close())}
}
}
- return rows, indexes, nil
+ return selection{
+ Rows: rows,
+ Slots: make([]any, len(indexes)),
+ Err: nil,
+ Indexes: indexes,
+ TransparentPointerStructFields: plan.TransparentPointerStructFields,
+ }
}
-func startSelectWhereQuery(ctx context.Context, db Handle, plan plan, partialQuery string, args ...any) (rows handle.Rows, indexes [][]int, err error) {
+func startSelectWhereQuery(ctx context.Context, db Handle, plan plan, partialQuery string, args ...any) selection {
if plan.Select.Query == "" {
- return nil, nil, errors.New("cannot execute SelectWhere() because query could not be autogenerated")
+ return selection{Err: errors.New("cannot execute SelectWhere() because query could not be autogenerated")}
}
query := plan.Select.Query + partialQuery
- rows, err = db.OblastQuery(ctx, query, args)
+ rows, err := db.OblastQuery(ctx, query, args)
if err != nil {
- err = fmt.Errorf("during Query(): %w", err)
+ return selection{Err: fmt.Errorf("during Query(): %w", err)}
}
- return rows, plan.Select.ScanIndexes, err
-}
-
-func collectRow(rows handle.Rows, plan plan, v reflect.Value, slots []any, indexes [][]int) error {
- for _, field := range plan.TransparentPointerStructFields {
- f := v.FieldByIndex(field.Index)
- f.Set(reflect.New(f.Type().Elem()))
- }
- for idx, index := range indexes {
- slots[idx] = v.FieldByIndex(index).Addr().Interface()
+ return selection{
+ Rows: rows,
+ Slots: make([]any, len(plan.Select.ScanIndexes)),
+ Err: nil,
+ Indexes: plan.Select.ScanIndexes,
+ TransparentPointerStructFields: plan.TransparentPointerStructFields,
}
- err := rows.Scan(slots...)
- if err != nil {
- return newIOError(err, "Rows.Close", rows.Close())
- }
- return nil
}
// SelectOne executes the provided SQL query and fills an instance of the record type R if there is exactly one row in the result set,
@@ -172,17 +112,7 @@ func (s Store[R]) SelectOne(ctx context.Context, db Handle, query string, args .
// NOTE: The "limitation in the interface of database/sql" is that type sql.Row does not have the Columns() method,
// which we need when mapping result columns to struct fields for user-provided queries.
- results, err := s.Select(ctx, db, query, args...)
- switch {
- case err != nil:
- var zero R
- return zero, err
- case len(results) == 0:
- var zero R
- return zero, sql.ErrNoRows
- default:
- return results[0], nil
- }
+ return s.Select(ctx, db, query, args...).First()
}
// SelectOneOrNone is like SelectOne, but returns [None] instead of [sql.ErrNoRows].
@@ -190,15 +120,7 @@ func (s Store[R]) SelectOneOrNone(ctx context.Context, db Handle, query string,
// NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
// Any expression that does not depend on type R should be factored out into a reusable function.
- results, err := s.Select(ctx, db, query, args...)
- switch {
- case err != nil:
- return None[R](), err
- case len(results) == 0:
- return None[R](), nil
- default:
- return Some(results[0]), nil
- }
+ return s.Select(ctx, db, query, args...).FirstOrNone()
}
// SelectOneWhere is like [Store.SelectOne], but you only provide the part of the SELECT query that comes after the WHERE.
@@ -295,40 +217,181 @@ type PreparedSelectQuery[R any] struct {
}
// Select behaves the same as [Store.SelectWhere], but uses the query that was precomputed when q was constructed.
-func (q PreparedSelectQuery[R]) Select(ctx context.Context, db Handle, args ...any) ([]R, error) {
+func (q PreparedSelectQuery[R]) Select(ctx context.Context, db Handle, args ...any) Selection[R] {
+ // NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
+ // Any expression that does not depend on type R should be factored out into a reusable function.
+ return Selection[R]{startSelectQuery(ctx, db, q.store.plan, q.query, args...)}
+}
+
+// SelectOne behaves the same as [Store.SelectOneWhere], but uses the query that was precomputed when q was constructed.
+func (q PreparedSelectQuery[R]) SelectOne(ctx context.Context, db Handle, args ...any) (R, error) {
// NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
// Any expression that does not depend on type R should be factored out into a reusable function.
- rows, indexes, err := startSelectQuery(ctx, db, q.store.plan, q.query, args...)
+ var result R
+ err := selectOne(ctx, db, q.store.plan, reflect.ValueOf(&result).Elem(), q.query, args)
+ return result, err
+}
+
+// SelectOneOrNone is like SelectOne, but returns [None] instead of [sql.ErrNoRows].
+func (q PreparedSelectQuery[R]) SelectOneOrNone(ctx context.Context, db Handle, args ...any) (Option[R], error) {
+ return noRowsToNone(q.SelectOne(ctx, db, args...))
+}
+
+////////////////////////////////////////////////////////////////////////////////
+// type Selection
+
+// Selection provides access to the result set from a [Store.Select], [Store.SelectWhere] or [PreparedSelectQuery.Select] call.
+//
+// Instances of this type are not meant to be held in variables.
+// Instead, chain one of its method calls directly after the Select or SelectWhere call to choose how to process the result set.
+type Selection[R any] struct {
+ selection
+}
+
+// selection contains the payload of [Selection].
+// This separate type does not have type arguments and thus is not duplicated by monomorphization.
+type selection struct {
+ // from startSelectQuery()
+ Rows handle.Rows
+ Slots []any // NOTE: len(s.Slots) == len(s.Indexes)
+ Err error // NOTE: if this field is set, all other fields will be unset
+ // from plan
+ Indexes [][]int
+ TransparentPointerStructFields []fieldInfo
+}
+
+func (s selection) collectRow(v reflect.Value, slots []any) error {
+ for _, field := range s.TransparentPointerStructFields {
+ f := v.FieldByIndex(field.Index)
+ f.Set(reflect.New(f.Type().Elem()))
+ }
+ for idx, index := range s.Indexes {
+ slots[idx] = v.FieldByIndex(index).Addr().Interface()
+ }
+ err := s.Rows.Scan(slots...)
if err != nil {
- return nil, err
+ return newIOError(err, "Rows.Close", s.Rows.Close())
+ }
+ return nil
+}
+
+// Collect returns all of the selected records as a slice.
+// This is the most versatile output format for type [Selection], but may cause a spike in memory usage for big result sets.
+func (s Selection[R]) Collect() ([]R, error) {
+ // NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
+ // Any expression that does not depend on type R should be factored out into a reusable function.
+
+ if s.Err != nil {
+ return nil, s.Err
}
var result []R
- slots := make([]any, len(indexes))
- for rows.Next() {
+ for s.Rows.Next() {
var target *R
result, target = growRecordSlice(result)
- err = collectRow(rows, q.store.plan, reflect.ValueOf(target).Elem(), slots, indexes)
+ err := s.collectRow(reflect.ValueOf(target).Elem(), s.Slots)
if err != nil {
return nil, err
}
}
- return result, newIOError(err, "Rows.Err", rows.Err())
+ return result, s.Rows.Err()
}
-// SelectOne behaves the same as [Store.SelectOneWhere], but uses the query that was precomputed when q was constructed.
-func (q PreparedSelectQuery[R]) SelectOne(ctx context.Context, db Handle, args ...any) (R, error) {
+// Appends an empty R to the slice and returns a pointer to it, as well as the updated slice.
+// It is more efficient to write:
+//
+// var result []R
+// for rows.Next() {
+// var target *R
+// result, target = growRecordSlice(result)
+// doSomethingWith(rows, reflect.ValueOf(target).Elem())
+// }
+//
+// Instead of the more obvious:
+//
+// var result []R
+// for rows.Next() {
+// var target R
+// doSomethingWith(rows, reflect.ValueOf(&target).Elem())
+// result = append(result, target)
+// }
+//
+// In the second phrasing, `target` escapes to the heap because of `reflect.ValueOf(&target)`,
+// causing an additional allocation for `target` as well as a memcpy of `target` during `append()`.
+func growRecordSlice[R any](records []R) (newRecords []R, target *R) {
+ var zero R
+ newRecords = append(records, zero)
+ return newRecords, &newRecords[len(newRecords)-1]
+}
+
+// Foreach retrieves the selected records one at a time, and calls the provided callback once for each record in order.
+// An error is returned if a database error occurs, of if any of the callback invocations returns an error.
+// In either case, subsequent records from the result set will not be loaded and the callbgck will not be invoked again.
+func (s Selection[R]) Foreach(action func(R) error) error {
// NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
// Any expression that does not depend on type R should be factored out into a reusable function.
- var result R
- err := selectOne(ctx, db, q.store.plan, reflect.ValueOf(&result).Elem(), q.query, args)
- return result, err
+ if s.Err != nil {
+ return s.Err
+ }
+
+ // NOTE: `record` will escape to the heap because of the reflect.ValueOf() call.
+ // By reusing the same `record` throughout the loop, this function will only allocate at most one instance of R on the heap.
+ var record R
+ v := reflect.ValueOf(&record).Elem()
+ for s.Rows.Next() {
+ var zero R
+ record = zero
+ err := s.collectRow(v, s.Slots)
+ if err != nil {
+ return err
+ }
+ err = action(record)
+ if err != nil {
+ return newIOError(err, "Rows.Close", s.Rows.Close())
+ }
+ }
+ return nil
}
-// SelectOneOrNone is like SelectOne, but returns [None] instead of [sql.ErrNoRows].
-func (q PreparedSelectQuery[R]) SelectOneOrNone(ctx context.Context, db Handle, args ...any) (Option[R], error) {
- return noRowsToNone(q.SelectOne(ctx, db, args...))
+// First retrieves just the first record from the result set, and then closes the result set without checking for additional records.
+// If there are no rows in the result set, [sql.ErrNoRows] is returned.
+// Using this method results in similar behavior to [Store.SelectOne].
+func (s Selection[R]) First() (R, error) {
+ // NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
+ // Any expression that does not depend on type R should be factored out into a reusable function.
+
+ var record R
+ if s.Err != nil {
+ return record, s.Err
+ }
+ if !s.Rows.Next() {
+ return record, sql.ErrNoRows
+ }
+ err := s.collectRow(reflect.ValueOf(&record).Elem(), s.Slots)
+ if err == nil {
+ err = s.Rows.Close()
+ }
+ return record, err
+}
+
+// FirstOrNone is like [Selection.First], but signals an empty result set using None instead of [sql.ErrNoRows].
+func (s Selection[R]) FirstOrNone() (Option[R], error) {
+ // NOTE: This function body should be as short as possible to reduce the binary size after monomorphization.
+ // Any expression that does not depend on type R should be factored out into a reusable function.
+
+ if s.Err != nil {
+ return None[R](), s.Err
+ }
+ if !s.Rows.Next() {
+ return None[R](), nil
+ }
+ var record R
+ err := s.collectRow(reflect.ValueOf(&record).Elem(), s.Slots)
+ if err == nil {
+ err = s.Rows.Close()
+ }
+ return Some(record), err
}