mirror of
https://github.com/superseriousbusiness/gotosocial.git
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ec325fee14
* [chore] Update a bunch of database dependencies * fix lil thing
436 lines
11 KiB
Go
436 lines
11 KiB
Go
package pgx
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import (
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"context"
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"errors"
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"fmt"
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"github.com/jackc/pgx/v5/pgconn"
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)
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// QueuedQuery is a query that has been queued for execution via a Batch.
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type QueuedQuery struct {
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query string
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arguments []any
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fn batchItemFunc
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sd *pgconn.StatementDescription
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}
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type batchItemFunc func(br BatchResults) error
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// Query sets fn to be called when the response to qq is received.
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func (qq *QueuedQuery) Query(fn func(rows Rows) error) {
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qq.fn = func(br BatchResults) error {
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rows, err := br.Query()
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if err != nil {
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return err
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}
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defer rows.Close()
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err = fn(rows)
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if err != nil {
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return err
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}
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rows.Close()
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return rows.Err()
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}
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}
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// Query sets fn to be called when the response to qq is received.
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func (qq *QueuedQuery) QueryRow(fn func(row Row) error) {
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qq.fn = func(br BatchResults) error {
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row := br.QueryRow()
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return fn(row)
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}
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}
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// Exec sets fn to be called when the response to qq is received.
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func (qq *QueuedQuery) Exec(fn func(ct pgconn.CommandTag) error) {
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qq.fn = func(br BatchResults) error {
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ct, err := br.Exec()
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if err != nil {
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return err
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}
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return fn(ct)
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}
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}
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// Batch queries are a way of bundling multiple queries together to avoid
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// unnecessary network round trips. A Batch must only be sent once.
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type Batch struct {
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queuedQueries []*QueuedQuery
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}
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// Queue queues a query to batch b. query can be an SQL query or the name of a prepared statement.
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func (b *Batch) Queue(query string, arguments ...any) *QueuedQuery {
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qq := &QueuedQuery{
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query: query,
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arguments: arguments,
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}
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b.queuedQueries = append(b.queuedQueries, qq)
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return qq
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}
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// Len returns number of queries that have been queued so far.
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func (b *Batch) Len() int {
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return len(b.queuedQueries)
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}
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type BatchResults interface {
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// Exec reads the results from the next query in the batch as if the query has been sent with Conn.Exec. Prefer
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// calling Exec on the QueuedQuery.
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Exec() (pgconn.CommandTag, error)
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// Query reads the results from the next query in the batch as if the query has been sent with Conn.Query. Prefer
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// calling Query on the QueuedQuery.
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Query() (Rows, error)
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// QueryRow reads the results from the next query in the batch as if the query has been sent with Conn.QueryRow.
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// Prefer calling QueryRow on the QueuedQuery.
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QueryRow() Row
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// Close closes the batch operation. All unread results are read and any callback functions registered with
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// QueuedQuery.Query, QueuedQuery.QueryRow, or QueuedQuery.Exec will be called. If a callback function returns an
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// error or the batch encounters an error subsequent callback functions will not be called.
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//
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// Close must be called before the underlying connection can be used again. Any error that occurred during a batch
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// operation may have made it impossible to resyncronize the connection with the server. In this case the underlying
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// connection will have been closed.
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//
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// Close is safe to call multiple times. If it returns an error subsequent calls will return the same error. Callback
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// functions will not be rerun.
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Close() error
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}
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type batchResults struct {
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ctx context.Context
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conn *Conn
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mrr *pgconn.MultiResultReader
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err error
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b *Batch
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qqIdx int
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closed bool
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endTraced bool
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}
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// Exec reads the results from the next query in the batch as if the query has been sent with Exec.
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func (br *batchResults) Exec() (pgconn.CommandTag, error) {
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if br.err != nil {
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return pgconn.CommandTag{}, br.err
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}
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if br.closed {
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return pgconn.CommandTag{}, fmt.Errorf("batch already closed")
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}
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query, arguments, _ := br.nextQueryAndArgs()
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if !br.mrr.NextResult() {
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err := br.mrr.Close()
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if err == nil {
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err = errors.New("no result")
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}
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if br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchQuery(br.ctx, br.conn, TraceBatchQueryData{
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SQL: query,
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Args: arguments,
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Err: err,
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})
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}
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return pgconn.CommandTag{}, err
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}
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commandTag, err := br.mrr.ResultReader().Close()
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br.err = err
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if br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchQuery(br.ctx, br.conn, TraceBatchQueryData{
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SQL: query,
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Args: arguments,
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CommandTag: commandTag,
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Err: br.err,
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})
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}
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return commandTag, br.err
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}
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// Query reads the results from the next query in the batch as if the query has been sent with Query.
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func (br *batchResults) Query() (Rows, error) {
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query, arguments, ok := br.nextQueryAndArgs()
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if !ok {
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query = "batch query"
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}
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if br.err != nil {
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return &baseRows{err: br.err, closed: true}, br.err
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}
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if br.closed {
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alreadyClosedErr := fmt.Errorf("batch already closed")
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return &baseRows{err: alreadyClosedErr, closed: true}, alreadyClosedErr
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}
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rows := br.conn.getRows(br.ctx, query, arguments)
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rows.batchTracer = br.conn.batchTracer
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if !br.mrr.NextResult() {
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rows.err = br.mrr.Close()
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if rows.err == nil {
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rows.err = errors.New("no result")
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}
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rows.closed = true
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if br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchQuery(br.ctx, br.conn, TraceBatchQueryData{
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SQL: query,
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Args: arguments,
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Err: rows.err,
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})
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}
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return rows, rows.err
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}
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rows.resultReader = br.mrr.ResultReader()
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return rows, nil
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}
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// QueryRow reads the results from the next query in the batch as if the query has been sent with QueryRow.
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func (br *batchResults) QueryRow() Row {
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rows, _ := br.Query()
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return (*connRow)(rows.(*baseRows))
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}
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// Close closes the batch operation. Any error that occurred during a batch operation may have made it impossible to
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// resyncronize the connection with the server. In this case the underlying connection will have been closed.
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func (br *batchResults) Close() error {
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defer func() {
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if !br.endTraced {
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if br.conn != nil && br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchEnd(br.ctx, br.conn, TraceBatchEndData{Err: br.err})
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}
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br.endTraced = true
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}
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}()
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if br.err != nil {
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return br.err
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}
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if br.closed {
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return nil
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}
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// Read and run fn for all remaining items
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for br.err == nil && !br.closed && br.b != nil && br.qqIdx < len(br.b.queuedQueries) {
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if br.b.queuedQueries[br.qqIdx].fn != nil {
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err := br.b.queuedQueries[br.qqIdx].fn(br)
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if err != nil && br.err == nil {
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br.err = err
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}
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} else {
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br.Exec()
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}
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}
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br.closed = true
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err := br.mrr.Close()
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if br.err == nil {
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br.err = err
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}
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return br.err
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}
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func (br *batchResults) earlyError() error {
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return br.err
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}
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func (br *batchResults) nextQueryAndArgs() (query string, args []any, ok bool) {
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if br.b != nil && br.qqIdx < len(br.b.queuedQueries) {
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bi := br.b.queuedQueries[br.qqIdx]
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query = bi.query
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args = bi.arguments
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ok = true
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br.qqIdx++
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}
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return
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}
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type pipelineBatchResults struct {
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ctx context.Context
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conn *Conn
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pipeline *pgconn.Pipeline
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lastRows *baseRows
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err error
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b *Batch
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qqIdx int
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closed bool
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endTraced bool
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}
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// Exec reads the results from the next query in the batch as if the query has been sent with Exec.
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func (br *pipelineBatchResults) Exec() (pgconn.CommandTag, error) {
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if br.err != nil {
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return pgconn.CommandTag{}, br.err
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}
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if br.closed {
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return pgconn.CommandTag{}, fmt.Errorf("batch already closed")
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}
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if br.lastRows != nil && br.lastRows.err != nil {
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return pgconn.CommandTag{}, br.err
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}
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query, arguments, _ := br.nextQueryAndArgs()
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results, err := br.pipeline.GetResults()
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if err != nil {
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br.err = err
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return pgconn.CommandTag{}, err
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}
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var commandTag pgconn.CommandTag
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switch results := results.(type) {
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case *pgconn.ResultReader:
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commandTag, br.err = results.Close()
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default:
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return pgconn.CommandTag{}, fmt.Errorf("unexpected pipeline result: %T", results)
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}
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if br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchQuery(br.ctx, br.conn, TraceBatchQueryData{
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SQL: query,
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Args: arguments,
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CommandTag: commandTag,
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Err: br.err,
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})
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}
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return commandTag, err
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}
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// Query reads the results from the next query in the batch as if the query has been sent with Query.
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func (br *pipelineBatchResults) Query() (Rows, error) {
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if br.err != nil {
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return &baseRows{err: br.err, closed: true}, br.err
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}
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if br.closed {
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alreadyClosedErr := fmt.Errorf("batch already closed")
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return &baseRows{err: alreadyClosedErr, closed: true}, alreadyClosedErr
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}
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if br.lastRows != nil && br.lastRows.err != nil {
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br.err = br.lastRows.err
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return &baseRows{err: br.err, closed: true}, br.err
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}
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query, arguments, ok := br.nextQueryAndArgs()
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if !ok {
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query = "batch query"
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}
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rows := br.conn.getRows(br.ctx, query, arguments)
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rows.batchTracer = br.conn.batchTracer
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br.lastRows = rows
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results, err := br.pipeline.GetResults()
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if err != nil {
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br.err = err
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rows.err = err
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rows.closed = true
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if br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchQuery(br.ctx, br.conn, TraceBatchQueryData{
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SQL: query,
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Args: arguments,
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Err: err,
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})
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}
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} else {
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switch results := results.(type) {
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case *pgconn.ResultReader:
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rows.resultReader = results
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default:
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err = fmt.Errorf("unexpected pipeline result: %T", results)
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br.err = err
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rows.err = err
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rows.closed = true
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}
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}
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return rows, rows.err
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}
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// QueryRow reads the results from the next query in the batch as if the query has been sent with QueryRow.
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func (br *pipelineBatchResults) QueryRow() Row {
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rows, _ := br.Query()
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return (*connRow)(rows.(*baseRows))
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}
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// Close closes the batch operation. Any error that occurred during a batch operation may have made it impossible to
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// resyncronize the connection with the server. In this case the underlying connection will have been closed.
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func (br *pipelineBatchResults) Close() error {
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defer func() {
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if !br.endTraced {
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if br.conn.batchTracer != nil {
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br.conn.batchTracer.TraceBatchEnd(br.ctx, br.conn, TraceBatchEndData{Err: br.err})
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}
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br.endTraced = true
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}
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}()
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if br.err != nil {
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return br.err
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}
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if br.lastRows != nil && br.lastRows.err != nil {
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br.err = br.lastRows.err
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return br.err
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}
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if br.closed {
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return nil
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}
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// Read and run fn for all remaining items
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for br.err == nil && !br.closed && br.b != nil && br.qqIdx < len(br.b.queuedQueries) {
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if br.b.queuedQueries[br.qqIdx].fn != nil {
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err := br.b.queuedQueries[br.qqIdx].fn(br)
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if err != nil && br.err == nil {
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br.err = err
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}
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} else {
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br.Exec()
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}
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}
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br.closed = true
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err := br.pipeline.Close()
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if br.err == nil {
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br.err = err
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}
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return br.err
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}
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func (br *pipelineBatchResults) earlyError() error {
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return br.err
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}
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func (br *pipelineBatchResults) nextQueryAndArgs() (query string, args []any, ok bool) {
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if br.b != nil && br.qqIdx < len(br.b.queuedQueries) {
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bi := br.b.queuedQueries[br.qqIdx]
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query = bi.query
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args = bi.arguments
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ok = true
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br.qqIdx++
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}
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return
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}
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