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374 lines
13 KiB
374 lines
13 KiB
3 years ago
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// Copyright (C) MongoDB, Inc. 2017-present.
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//
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// Licensed under the Apache License, Version 2.0 (the "License"); you may
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// not use this file except in compliance with the License. You may obtain
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// a copy of the License at http://www.apache.org/licenses/LICENSE-2.0
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package mongo
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import (
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"context"
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"errors"
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"time"
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"go.mongodb.org/mongo-driver/bson"
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"go.mongodb.org/mongo-driver/bson/primitive"
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"go.mongodb.org/mongo-driver/internal"
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"go.mongodb.org/mongo-driver/mongo/description"
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"go.mongodb.org/mongo-driver/mongo/options"
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"go.mongodb.org/mongo-driver/x/bsonx/bsoncore"
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"go.mongodb.org/mongo-driver/x/mongo/driver"
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"go.mongodb.org/mongo-driver/x/mongo/driver/operation"
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"go.mongodb.org/mongo-driver/x/mongo/driver/session"
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)
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// ErrWrongClient is returned when a user attempts to pass in a session created by a different client than
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// the method call is using.
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var ErrWrongClient = errors.New("session was not created by this client")
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var withTransactionTimeout = 120 * time.Second
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// SessionContext combines the context.Context and mongo.Session interfaces. It should be used as the Context arguments
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// to operations that should be executed in a session. This type is not goroutine safe and must not be used concurrently
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// by multiple goroutines.
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//
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// There are two ways to create a SessionContext and use it in a session/transaction. The first is to use one of the
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// callback-based functions such as WithSession and UseSession. These functions create a SessionContext and pass it to
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// the provided callback. The other is to use NewSessionContext to explicitly create a SessionContext.
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type SessionContext interface {
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context.Context
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Session
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}
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type sessionContext struct {
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context.Context
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Session
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}
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type sessionKey struct {
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}
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// NewSessionContext creates a new SessionContext associated with the given Context and Session parameters.
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func NewSessionContext(ctx context.Context, sess Session) SessionContext {
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return &sessionContext{
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Context: context.WithValue(ctx, sessionKey{}, sess),
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Session: sess,
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}
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}
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// SessionFromContext extracts the mongo.Session object stored in a Context. This can be used on a SessionContext that
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// was created implicitly through one of the callback-based session APIs or explicitly by calling NewSessionContext. If
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// there is no Session stored in the provided Context, nil is returned.
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func SessionFromContext(ctx context.Context) Session {
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val := ctx.Value(sessionKey{})
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if val == nil {
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return nil
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}
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sess, ok := val.(Session)
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if !ok {
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return nil
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}
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return sess
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}
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// Session is an interface that represents a MongoDB logical session. Sessions can be used to enable causal consistency
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// for a group of operations or to execute operations in an ACID transaction. A new Session can be created from a Client
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// instance. A Session created from a Client must only be used to execute operations using that Client or a Database or
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// Collection created from that Client. Custom implementations of this interface should not be used in production. For
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// more information about sessions, and their use cases, see https://docs.mongodb.com/manual/reference/server-sessions/,
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// https://docs.mongodb.com/manual/core/read-isolation-consistency-recency/#causal-consistency, and
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// https://docs.mongodb.com/manual/core/transactions/.
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//
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// StartTransaction starts a new transaction, configured with the given options, on this session. This method will
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// return an error if there is already a transaction in-progress for this session.
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//
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// CommitTransaction commits the active transaction for this session. This method will return an error if there is no
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// active transaction for this session or the transaction has been aborted.
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//
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// AbortTransaction aborts the active transaction for this session. This method will return an error if there is no
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// active transaction for this session or the transaction has been committed or aborted.
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//
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// WithTransaction starts a transaction on this session and runs the fn callback. Errors with the
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// TransientTransactionError and UnknownTransactionCommitResult labels are retried for up to 120 seconds. Inside the
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// callback, sessCtx must be used as the Context parameter for any operations that should be part of the transaction. If
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// the ctx parameter already has a Session attached to it, it will be replaced by this session. The fn callback may be
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// run multiple times during WithTransaction due to retry attempts, so it must be idempotent. Non-retryable operation
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// errors or any operation errors that occur after the timeout expires will be returned without retrying. If the
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// callback fails, the driver will call AbortTransaction. Because this method must succeed to ensure that server-side
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// resources are properly cleaned up, context deadlines and cancellations will not be respected during this call. For a
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// usage example, see the Client.StartSession method documentation.
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//
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// ClusterTime, OperationTime, Client, and ID return the session's current cluster time, the session's current operation
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// time, the Client associated with the session, and the ID document associated with the session, respectively. The ID
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// document for a session is in the form {"id": <BSON binary value>}.
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//
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// EndSession method should abort any existing transactions and close the session.
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//
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// AdvanceClusterTime advances the cluster time for a session. This method will return an error if the session has ended.
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//
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// AdvanceOperationTime advances the operation time for a session. This method will return an error if the session has
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// ended.
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type Session interface {
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// Functions to modify session state.
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StartTransaction(...*options.TransactionOptions) error
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AbortTransaction(context.Context) error
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CommitTransaction(context.Context) error
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WithTransaction(ctx context.Context, fn func(sessCtx SessionContext) (interface{}, error),
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opts ...*options.TransactionOptions) (interface{}, error)
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EndSession(context.Context)
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// Functions to retrieve session properties.
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ClusterTime() bson.Raw
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OperationTime() *primitive.Timestamp
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Client() *Client
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ID() bson.Raw
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// Functions to modify mutable session properties.
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AdvanceClusterTime(bson.Raw) error
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AdvanceOperationTime(*primitive.Timestamp) error
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session()
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}
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// XSession is an unstable interface for internal use only.
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//
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// Deprecated: This interface is unstable because it provides access to a session.Client object, which exists in the
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// "x" package. It should not be used by applications and may be changed or removed in any release.
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type XSession interface {
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ClientSession() *session.Client
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}
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// sessionImpl represents a set of sequential operations executed by an application that are related in some way.
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type sessionImpl struct {
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clientSession *session.Client
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client *Client
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deployment driver.Deployment
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didCommitAfterStart bool // true if commit was called after start with no other operations
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}
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var _ Session = &sessionImpl{}
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var _ XSession = &sessionImpl{}
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// ClientSession implements the XSession interface.
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func (s *sessionImpl) ClientSession() *session.Client {
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return s.clientSession
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}
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// ID implements the Session interface.
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func (s *sessionImpl) ID() bson.Raw {
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return bson.Raw(s.clientSession.SessionID)
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}
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// EndSession implements the Session interface.
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func (s *sessionImpl) EndSession(ctx context.Context) {
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if s.clientSession.TransactionInProgress() {
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// ignore all errors aborting during an end session
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_ = s.AbortTransaction(ctx)
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}
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s.clientSession.EndSession()
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}
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// WithTransaction implements the Session interface.
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func (s *sessionImpl) WithTransaction(ctx context.Context, fn func(sessCtx SessionContext) (interface{}, error),
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opts ...*options.TransactionOptions) (interface{}, error) {
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timeout := time.NewTimer(withTransactionTimeout)
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defer timeout.Stop()
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var err error
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for {
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err = s.StartTransaction(opts...)
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if err != nil {
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return nil, err
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}
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res, err := fn(NewSessionContext(ctx, s))
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if err != nil {
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if s.clientSession.TransactionRunning() {
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// Wrap the user-provided Context in a new one that behaves like context.Background() for deadlines and
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// cancellations, but forwards Value requests to the original one.
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_ = s.AbortTransaction(internal.NewBackgroundContext(ctx))
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}
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select {
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case <-timeout.C:
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return nil, err
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default:
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}
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// End if context has timed out or been canceled, as retrying has no chance of success.
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if ctx.Err() != nil {
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return res, err
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}
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if errorHasLabel(err, driver.TransientTransactionError) {
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continue
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}
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return res, err
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}
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err = s.clientSession.CheckAbortTransaction()
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if err != nil {
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return res, nil
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}
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CommitLoop:
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for {
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err = s.CommitTransaction(ctx)
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// End when error is nil (transaction has been committed), or when context has timed out or been
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// canceled, as retrying has no chance of success.
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if err == nil || ctx.Err() != nil {
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return res, err
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}
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select {
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case <-timeout.C:
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return res, err
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default:
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}
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if cerr, ok := err.(CommandError); ok {
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if cerr.HasErrorLabel(driver.UnknownTransactionCommitResult) && !cerr.IsMaxTimeMSExpiredError() {
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continue
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}
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if cerr.HasErrorLabel(driver.TransientTransactionError) {
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break CommitLoop
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}
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}
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return res, err
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}
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}
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}
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// StartTransaction implements the Session interface.
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func (s *sessionImpl) StartTransaction(opts ...*options.TransactionOptions) error {
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err := s.clientSession.CheckStartTransaction()
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if err != nil {
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return err
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}
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s.didCommitAfterStart = false
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topts := options.MergeTransactionOptions(opts...)
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coreOpts := &session.TransactionOptions{
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ReadConcern: topts.ReadConcern,
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ReadPreference: topts.ReadPreference,
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WriteConcern: topts.WriteConcern,
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MaxCommitTime: topts.MaxCommitTime,
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}
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return s.clientSession.StartTransaction(coreOpts)
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}
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// AbortTransaction implements the Session interface.
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func (s *sessionImpl) AbortTransaction(ctx context.Context) error {
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err := s.clientSession.CheckAbortTransaction()
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if err != nil {
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return err
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}
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// Do not run the abort command if the transaction is in starting state
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if s.clientSession.TransactionStarting() || s.didCommitAfterStart {
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return s.clientSession.AbortTransaction()
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}
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selector := makePinnedSelector(s.clientSession, description.WriteSelector())
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s.clientSession.Aborting = true
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_ = operation.NewAbortTransaction().Session(s.clientSession).ClusterClock(s.client.clock).Database("admin").
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Deployment(s.deployment).WriteConcern(s.clientSession.CurrentWc).ServerSelector(selector).
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Retry(driver.RetryOncePerCommand).CommandMonitor(s.client.monitor).
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RecoveryToken(bsoncore.Document(s.clientSession.RecoveryToken)).ServerAPI(s.client.serverAPI).Execute(ctx)
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s.clientSession.Aborting = false
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_ = s.clientSession.AbortTransaction()
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return nil
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}
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// CommitTransaction implements the Session interface.
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func (s *sessionImpl) CommitTransaction(ctx context.Context) error {
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err := s.clientSession.CheckCommitTransaction()
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if err != nil {
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return err
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}
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// Do not run the commit command if the transaction is in started state
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if s.clientSession.TransactionStarting() || s.didCommitAfterStart {
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s.didCommitAfterStart = true
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return s.clientSession.CommitTransaction()
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}
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if s.clientSession.TransactionCommitted() {
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s.clientSession.RetryingCommit = true
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}
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selector := makePinnedSelector(s.clientSession, description.WriteSelector())
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s.clientSession.Committing = true
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op := operation.NewCommitTransaction().
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Session(s.clientSession).ClusterClock(s.client.clock).Database("admin").Deployment(s.deployment).
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WriteConcern(s.clientSession.CurrentWc).ServerSelector(selector).Retry(driver.RetryOncePerCommand).
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CommandMonitor(s.client.monitor).RecoveryToken(bsoncore.Document(s.clientSession.RecoveryToken)).
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ServerAPI(s.client.serverAPI)
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if s.clientSession.CurrentMct != nil {
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op.MaxTimeMS(int64(*s.clientSession.CurrentMct / time.Millisecond))
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}
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err = op.Execute(ctx)
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// Return error without updating transaction state if it is a timeout, as the transaction has not
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// actually been committed.
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if IsTimeout(err) {
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return replaceErrors(err)
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}
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s.clientSession.Committing = false
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commitErr := s.clientSession.CommitTransaction()
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// We set the write concern to majority for subsequent calls to CommitTransaction.
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s.clientSession.UpdateCommitTransactionWriteConcern()
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if err != nil {
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return replaceErrors(err)
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}
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return commitErr
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}
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// ClusterTime implements the Session interface.
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func (s *sessionImpl) ClusterTime() bson.Raw {
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return s.clientSession.ClusterTime
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}
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// AdvanceClusterTime implements the Session interface.
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func (s *sessionImpl) AdvanceClusterTime(d bson.Raw) error {
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return s.clientSession.AdvanceClusterTime(d)
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}
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// OperationTime implements the Session interface.
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func (s *sessionImpl) OperationTime() *primitive.Timestamp {
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return s.clientSession.OperationTime
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}
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// AdvanceOperationTime implements the Session interface.
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func (s *sessionImpl) AdvanceOperationTime(ts *primitive.Timestamp) error {
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return s.clientSession.AdvanceOperationTime(ts)
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}
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// Client implements the Session interface.
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func (s *sessionImpl) Client() *Client {
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return s.client
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}
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// session implements the Session interface.
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func (*sessionImpl) session() {
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}
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// sessionFromContext checks for a sessionImpl in the argued context and returns the session if it
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// exists
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func sessionFromContext(ctx context.Context) *session.Client {
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s := ctx.Value(sessionKey{})
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if ses, ok := s.(*sessionImpl); ses != nil && ok {
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return ses.clientSession
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}
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return nil
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}
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