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703 lines
21 KiB
JavaScript
703 lines
21 KiB
JavaScript
'use strict';
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const retrieveBSON = require('./connection/utils').retrieveBSON;
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const EventEmitter = require('events');
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const BSON = retrieveBSON();
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const Binary = BSON.Binary;
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const uuidV4 = require('./utils').uuidV4;
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const MongoError = require('./error').MongoError;
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const isRetryableError = require('././error').isRetryableError;
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const MongoNetworkError = require('./error').MongoNetworkError;
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const MongoWriteConcernError = require('./error').MongoWriteConcernError;
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const Transaction = require('./transactions').Transaction;
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const TxnState = require('./transactions').TxnState;
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const isPromiseLike = require('./utils').isPromiseLike;
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const ReadPreference = require('./topologies/read_preference');
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const isTransactionCommand = require('./transactions').isTransactionCommand;
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const resolveClusterTime = require('./topologies/shared').resolveClusterTime;
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function assertAlive(session, callback) {
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if (session.serverSession == null) {
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const error = new MongoError('Cannot use a session that has ended');
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if (typeof callback === 'function') {
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callback(error, null);
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return false;
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}
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throw error;
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}
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return true;
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}
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/**
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* Options to pass when creating a Client Session
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* @typedef {Object} SessionOptions
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* @property {boolean} [causalConsistency=true] Whether causal consistency should be enabled on this session
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* @property {TransactionOptions} [defaultTransactionOptions] The default TransactionOptions to use for transactions started on this session.
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*/
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/**
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* A BSON document reflecting the lsid of a {@link ClientSession}
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* @typedef {Object} SessionId
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*/
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/**
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* A class representing a client session on the server
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* WARNING: not meant to be instantiated directly.
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* @class
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* @hideconstructor
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*/
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class ClientSession extends EventEmitter {
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/**
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* Create a client session.
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* WARNING: not meant to be instantiated directly
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*
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* @param {Topology} topology The current client's topology (Internal Class)
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* @param {ServerSessionPool} sessionPool The server session pool (Internal Class)
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* @param {SessionOptions} [options] Optional settings
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* @param {Object} [clientOptions] Optional settings provided when creating a client in the porcelain driver
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*/
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constructor(topology, sessionPool, options, clientOptions) {
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super();
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if (topology == null) {
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throw new Error('ClientSession requires a topology');
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}
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if (sessionPool == null || !(sessionPool instanceof ServerSessionPool)) {
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throw new Error('ClientSession requires a ServerSessionPool');
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}
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options = options || {};
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this.topology = topology;
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this.sessionPool = sessionPool;
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this.hasEnded = false;
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this.serverSession = sessionPool.acquire();
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this.clientOptions = clientOptions;
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this.supports = {
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causalConsistency:
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typeof options.causalConsistency !== 'undefined' ? options.causalConsistency : true
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};
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options = options || {};
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if (typeof options.initialClusterTime !== 'undefined') {
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this.clusterTime = options.initialClusterTime;
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} else {
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this.clusterTime = null;
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}
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this.operationTime = null;
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this.explicit = !!options.explicit;
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this.owner = options.owner;
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this.defaultTransactionOptions = Object.assign({}, options.defaultTransactionOptions);
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this.transaction = new Transaction();
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}
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/**
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* The server id associated with this session
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* @type {SessionId}
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*/
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get id() {
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return this.serverSession.id;
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}
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/**
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* Ends this session on the server
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*
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* @param {Object} [options] Optional settings. Currently reserved for future use
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* @param {Function} [callback] Optional callback for completion of this operation
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*/
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endSession(options, callback) {
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if (typeof options === 'function') (callback = options), (options = {});
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options = options || {};
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if (this.hasEnded) {
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if (typeof callback === 'function') callback(null, null);
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return;
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}
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if (this.serverSession && this.inTransaction()) {
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this.abortTransaction(); // pass in callback?
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}
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// mark the session as ended, and emit a signal
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this.hasEnded = true;
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this.emit('ended', this);
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// release the server session back to the pool
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this.sessionPool.release(this.serverSession);
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this.serverSession = null;
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// spec indicates that we should ignore all errors for `endSessions`
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if (typeof callback === 'function') callback(null, null);
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}
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/**
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* Advances the operationTime for a ClientSession.
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*
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* @param {Timestamp} operationTime the `BSON.Timestamp` of the operation type it is desired to advance to
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*/
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advanceOperationTime(operationTime) {
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if (this.operationTime == null) {
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this.operationTime = operationTime;
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return;
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}
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if (operationTime.greaterThan(this.operationTime)) {
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this.operationTime = operationTime;
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}
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}
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/**
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* Used to determine if this session equals another
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* @param {ClientSession} session
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* @return {boolean} true if the sessions are equal
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*/
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equals(session) {
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if (!(session instanceof ClientSession)) {
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return false;
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}
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return this.id.id.buffer.equals(session.id.id.buffer);
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}
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/**
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* Increment the transaction number on the internal ServerSession
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*/
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incrementTransactionNumber() {
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this.serverSession.txnNumber++;
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}
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/**
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* @returns {boolean} whether this session is currently in a transaction or not
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*/
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inTransaction() {
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return this.transaction.isActive;
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}
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/**
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* Starts a new transaction with the given options.
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*
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* @param {TransactionOptions} options Options for the transaction
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*/
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startTransaction(options) {
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assertAlive(this);
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if (this.inTransaction()) {
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throw new MongoError('Transaction already in progress');
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}
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// increment txnNumber
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this.incrementTransactionNumber();
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// create transaction state
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this.transaction = new Transaction(
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Object.assign({}, this.clientOptions, options || this.defaultTransactionOptions)
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);
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this.transaction.transition(TxnState.STARTING_TRANSACTION);
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}
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/**
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* Commits the currently active transaction in this session.
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*
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* @param {Function} [callback] optional callback for completion of this operation
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* @return {Promise} A promise is returned if no callback is provided
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*/
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commitTransaction(callback) {
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if (typeof callback === 'function') {
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endTransaction(this, 'commitTransaction', callback);
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return;
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}
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return new Promise((resolve, reject) => {
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endTransaction(
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this,
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'commitTransaction',
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(err, reply) => (err ? reject(err) : resolve(reply))
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);
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});
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}
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/**
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* Aborts the currently active transaction in this session.
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*
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* @param {Function} [callback] optional callback for completion of this operation
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* @return {Promise} A promise is returned if no callback is provided
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*/
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abortTransaction(callback) {
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if (typeof callback === 'function') {
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endTransaction(this, 'abortTransaction', callback);
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return;
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}
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return new Promise((resolve, reject) => {
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endTransaction(
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this,
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'abortTransaction',
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(err, reply) => (err ? reject(err) : resolve(reply))
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);
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});
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}
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/**
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* This is here to ensure that ClientSession is never serialized to BSON.
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* @ignore
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*/
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toBSON() {
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throw new Error('ClientSession cannot be serialized to BSON.');
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}
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/**
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* A user provided function to be run within a transaction
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*
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* @callback WithTransactionCallback
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* @param {ClientSession} session The parent session of the transaction running the operation. This should be passed into each operation within the lambda.
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* @returns {Promise} The resulting Promise of operations run within this transaction
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*/
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/**
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* Runs a provided lambda within a transaction, retrying either the commit operation
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* or entire transaction as needed (and when the error permits) to better ensure that
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* the transaction can complete successfully.
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*
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* IMPORTANT: This method requires the user to return a Promise, all lambdas that do not
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* return a Promise will result in undefined behavior.
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*
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* @param {WithTransactionCallback} fn
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* @param {TransactionOptions} [options] Optional settings for the transaction
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*/
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withTransaction(fn, options) {
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const startTime = Date.now();
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return attemptTransaction(this, startTime, fn, options);
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}
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}
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const MAX_WITH_TRANSACTION_TIMEOUT = 120000;
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const UNSATISFIABLE_WRITE_CONCERN_CODE = 100;
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const UNKNOWN_REPL_WRITE_CONCERN_CODE = 79;
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const NON_DETERMINISTIC_WRITE_CONCERN_ERRORS = new Set([
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'CannotSatisfyWriteConcern',
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'UnknownReplWriteConcern',
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'UnsatisfiableWriteConcern'
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]);
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function hasNotTimedOut(startTime, max) {
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return Date.now() - startTime < max;
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}
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function isUnknownTransactionCommitResult(err) {
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return (
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!NON_DETERMINISTIC_WRITE_CONCERN_ERRORS.has(err.codeName) &&
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err.code !== UNSATISFIABLE_WRITE_CONCERN_CODE &&
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err.code !== UNKNOWN_REPL_WRITE_CONCERN_CODE
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);
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}
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function attemptTransactionCommit(session, startTime, fn, options) {
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return session.commitTransaction().catch(err => {
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if (err instanceof MongoError && hasNotTimedOut(startTime, MAX_WITH_TRANSACTION_TIMEOUT)) {
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if (err.hasErrorLabel('UnknownTransactionCommitResult')) {
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return attemptTransactionCommit(session, startTime, fn, options);
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}
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if (err.hasErrorLabel('TransientTransactionError')) {
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return attemptTransaction(session, startTime, fn, options);
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}
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}
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throw err;
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});
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}
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const USER_EXPLICIT_TXN_END_STATES = new Set([
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TxnState.NO_TRANSACTION,
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TxnState.TRANSACTION_COMMITTED,
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TxnState.TRANSACTION_ABORTED
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]);
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function userExplicitlyEndedTransaction(session) {
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return USER_EXPLICIT_TXN_END_STATES.has(session.transaction.state);
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}
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function attemptTransaction(session, startTime, fn, options) {
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session.startTransaction(options);
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let promise;
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try {
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promise = fn(session);
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} catch (err) {
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promise = Promise.reject(err);
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}
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if (!isPromiseLike(promise)) {
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session.abortTransaction();
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throw new TypeError('Function provided to `withTransaction` must return a Promise');
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}
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return promise
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.then(() => {
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if (userExplicitlyEndedTransaction(session)) {
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return;
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}
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return attemptTransactionCommit(session, startTime, fn, options);
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})
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.catch(err => {
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function maybeRetryOrThrow(err) {
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if (
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err instanceof MongoError &&
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err.hasErrorLabel('TransientTransactionError') &&
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hasNotTimedOut(startTime, MAX_WITH_TRANSACTION_TIMEOUT)
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) {
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return attemptTransaction(session, startTime, fn, options);
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}
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throw err;
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}
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if (session.transaction.isActive) {
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return session.abortTransaction().then(() => maybeRetryOrThrow(err));
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}
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return maybeRetryOrThrow(err);
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});
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}
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function endTransaction(session, commandName, callback) {
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if (!assertAlive(session, callback)) {
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// checking result in case callback was called
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return;
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}
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// handle any initial problematic cases
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let txnState = session.transaction.state;
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if (txnState === TxnState.NO_TRANSACTION) {
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callback(new MongoError('No transaction started'));
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return;
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}
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if (commandName === 'commitTransaction') {
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if (
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txnState === TxnState.STARTING_TRANSACTION ||
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txnState === TxnState.TRANSACTION_COMMITTED_EMPTY
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) {
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// the transaction was never started, we can safely exit here
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session.transaction.transition(TxnState.TRANSACTION_COMMITTED_EMPTY);
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callback(null, null);
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return;
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}
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if (txnState === TxnState.TRANSACTION_ABORTED) {
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callback(new MongoError('Cannot call commitTransaction after calling abortTransaction'));
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return;
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}
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} else {
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if (txnState === TxnState.STARTING_TRANSACTION) {
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// the transaction was never started, we can safely exit here
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session.transaction.transition(TxnState.TRANSACTION_ABORTED);
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callback(null, null);
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return;
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}
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if (txnState === TxnState.TRANSACTION_ABORTED) {
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callback(new MongoError('Cannot call abortTransaction twice'));
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return;
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}
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if (
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txnState === TxnState.TRANSACTION_COMMITTED ||
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txnState === TxnState.TRANSACTION_COMMITTED_EMPTY
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) {
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callback(new MongoError('Cannot call abortTransaction after calling commitTransaction'));
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return;
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}
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}
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// construct and send the command
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const command = { [commandName]: 1 };
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// apply a writeConcern if specified
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let writeConcern;
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if (session.transaction.options.writeConcern) {
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writeConcern = Object.assign({}, session.transaction.options.writeConcern);
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} else if (session.clientOptions && session.clientOptions.w) {
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writeConcern = { w: session.clientOptions.w };
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}
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if (txnState === TxnState.TRANSACTION_COMMITTED) {
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writeConcern = Object.assign({ wtimeout: 10000 }, writeConcern, { w: 'majority' });
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}
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if (writeConcern) {
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Object.assign(command, { writeConcern });
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}
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function commandHandler(e, r) {
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if (commandName === 'commitTransaction') {
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session.transaction.transition(TxnState.TRANSACTION_COMMITTED);
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if (
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e &&
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(e instanceof MongoNetworkError ||
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e instanceof MongoWriteConcernError ||
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isRetryableError(e))
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) {
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if (e.errorLabels) {
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const idx = e.errorLabels.indexOf('TransientTransactionError');
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if (idx !== -1) {
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e.errorLabels.splice(idx, 1);
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}
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} else {
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e.errorLabels = [];
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}
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if (isUnknownTransactionCommitResult(e)) {
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e.errorLabels.push('UnknownTransactionCommitResult');
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// per txns spec, must unpin session in this case
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session.transaction.unpinServer();
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}
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}
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} else {
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session.transaction.transition(TxnState.TRANSACTION_ABORTED);
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}
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callback(e, r);
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}
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// The spec indicates that we should ignore all errors on `abortTransaction`
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function transactionError(err) {
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return commandName === 'commitTransaction' ? err : null;
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}
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if (
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// Assumption here that commandName is "commitTransaction" or "abortTransaction"
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session.transaction.recoveryToken &&
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supportsRecoveryToken(session)
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) {
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command.recoveryToken = session.transaction.recoveryToken;
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}
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// send the command
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session.topology.command('admin.$cmd', command, { session }, (err, reply) => {
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if (err && isRetryableError(err)) {
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// SPEC-1185: apply majority write concern when retrying commitTransaction
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if (command.commitTransaction) {
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// per txns spec, must unpin session in this case
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session.transaction.unpinServer();
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command.writeConcern = Object.assign({ wtimeout: 10000 }, command.writeConcern, {
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w: 'majority'
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});
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}
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return session.topology.command('admin.$cmd', command, { session }, (_err, _reply) =>
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commandHandler(transactionError(_err), _reply)
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);
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}
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commandHandler(transactionError(err), reply);
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});
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}
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function supportsRecoveryToken(session) {
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const topology = session.topology;
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return !!topology.s.options.useRecoveryToken;
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}
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/**
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* Reflects the existence of a session on the server. Can be reused by the session pool.
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* WARNING: not meant to be instantiated directly. For internal use only.
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* @ignore
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*/
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class ServerSession {
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constructor() {
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this.id = { id: new Binary(uuidV4(), Binary.SUBTYPE_UUID) };
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this.lastUse = Date.now();
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this.txnNumber = 0;
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}
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/**
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* Determines if the server session has timed out.
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* @ignore
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* @param {Date} sessionTimeoutMinutes The server's "logicalSessionTimeoutMinutes"
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* @return {boolean} true if the session has timed out.
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*/
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hasTimedOut(sessionTimeoutMinutes) {
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// Take the difference of the lastUse timestamp and now, which will result in a value in
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// milliseconds, and then convert milliseconds to minutes to compare to `sessionTimeoutMinutes`
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const idleTimeMinutes = Math.round(
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(((Date.now() - this.lastUse) % 86400000) % 3600000) / 60000
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);
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return idleTimeMinutes > sessionTimeoutMinutes - 1;
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}
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}
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/**
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* Maintains a pool of Server Sessions.
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* For internal use only
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* @ignore
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*/
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class ServerSessionPool {
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constructor(topology) {
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if (topology == null) {
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throw new Error('ServerSessionPool requires a topology');
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}
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this.topology = topology;
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this.sessions = [];
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}
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/**
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* Ends all sessions in the session pool.
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* @ignore
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*/
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endAllPooledSessions() {
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if (this.sessions.length) {
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this.topology.endSessions(this.sessions.map(session => session.id));
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this.sessions = [];
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|
}
|
|
}
|
|
|
|
/**
|
|
* Acquire a Server Session from the pool.
|
|
* Iterates through each session in the pool, removing any stale sessions
|
|
* along the way. The first non-stale session found is removed from the
|
|
* pool and returned. If no non-stale session is found, a new ServerSession
|
|
* is created.
|
|
* @ignore
|
|
* @returns {ServerSession}
|
|
*/
|
|
acquire() {
|
|
const sessionTimeoutMinutes = this.topology.logicalSessionTimeoutMinutes;
|
|
while (this.sessions.length) {
|
|
const session = this.sessions.shift();
|
|
if (!session.hasTimedOut(sessionTimeoutMinutes)) {
|
|
return session;
|
|
}
|
|
}
|
|
|
|
return new ServerSession();
|
|
}
|
|
|
|
/**
|
|
* Release a session to the session pool
|
|
* Adds the session back to the session pool if the session has not timed out yet.
|
|
* This method also removes any stale sessions from the pool.
|
|
* @ignore
|
|
* @param {ServerSession} session The session to release to the pool
|
|
*/
|
|
release(session) {
|
|
const sessionTimeoutMinutes = this.topology.logicalSessionTimeoutMinutes;
|
|
while (this.sessions.length) {
|
|
const session = this.sessions[this.sessions.length - 1];
|
|
if (session.hasTimedOut(sessionTimeoutMinutes)) {
|
|
this.sessions.pop();
|
|
} else {
|
|
break;
|
|
}
|
|
}
|
|
|
|
if (!session.hasTimedOut(sessionTimeoutMinutes)) {
|
|
this.sessions.unshift(session);
|
|
}
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Optionally decorate a command with sessions specific keys
|
|
*
|
|
* @param {ClientSession} session the session tracking transaction state
|
|
* @param {Object} command the command to decorate
|
|
* @param {Object} topology the topology for tracking the cluster time
|
|
* @param {Object} [options] Optional settings passed to calling operation
|
|
* @return {MongoError|null} An error, if some error condition was met
|
|
*/
|
|
function applySession(session, command, options) {
|
|
const serverSession = session.serverSession;
|
|
if (serverSession == null) {
|
|
// TODO: merge this with `assertAlive`, did not want to throw a try/catch here
|
|
return new MongoError('Cannot use a session that has ended');
|
|
}
|
|
|
|
// mark the last use of this session, and apply the `lsid`
|
|
serverSession.lastUse = Date.now();
|
|
command.lsid = serverSession.id;
|
|
|
|
// first apply non-transaction-specific sessions data
|
|
const inTransaction = session.inTransaction() || isTransactionCommand(command);
|
|
const isRetryableWrite = options.willRetryWrite;
|
|
|
|
if (serverSession.txnNumber && (isRetryableWrite || inTransaction)) {
|
|
command.txnNumber = BSON.Long.fromNumber(serverSession.txnNumber);
|
|
}
|
|
|
|
// now attempt to apply transaction-specific sessions data
|
|
if (!inTransaction) {
|
|
if (session.transaction.state !== TxnState.NO_TRANSACTION) {
|
|
session.transaction.transition(TxnState.NO_TRANSACTION);
|
|
}
|
|
|
|
// TODO: the following should only be applied to read operation per spec.
|
|
// for causal consistency
|
|
if (session.supports.causalConsistency && session.operationTime) {
|
|
command.readConcern = command.readConcern || {};
|
|
Object.assign(command.readConcern, { afterClusterTime: session.operationTime });
|
|
}
|
|
|
|
return;
|
|
}
|
|
|
|
if (options.readPreference && !options.readPreference.equals(ReadPreference.primary)) {
|
|
return new MongoError(
|
|
`Read preference in a transaction must be primary, not: ${options.readPreference.mode}`
|
|
);
|
|
}
|
|
|
|
// `autocommit` must always be false to differentiate from retryable writes
|
|
command.autocommit = false;
|
|
|
|
if (session.transaction.state === TxnState.STARTING_TRANSACTION) {
|
|
session.transaction.transition(TxnState.TRANSACTION_IN_PROGRESS);
|
|
command.startTransaction = true;
|
|
|
|
const readConcern =
|
|
session.transaction.options.readConcern || session.clientOptions.readConcern;
|
|
if (readConcern) {
|
|
command.readConcern = readConcern;
|
|
}
|
|
|
|
if (session.supports.causalConsistency && session.operationTime) {
|
|
command.readConcern = command.readConcern || {};
|
|
Object.assign(command.readConcern, { afterClusterTime: session.operationTime });
|
|
}
|
|
}
|
|
}
|
|
|
|
function updateSessionFromResponse(session, document) {
|
|
if (document.$clusterTime) {
|
|
resolveClusterTime(session, document.$clusterTime);
|
|
}
|
|
|
|
if (document.operationTime && session && session.supports.causalConsistency) {
|
|
session.advanceOperationTime(document.operationTime);
|
|
}
|
|
|
|
if (document.recoveryToken && session && session.inTransaction()) {
|
|
session.transaction._recoveryToken = document.recoveryToken;
|
|
}
|
|
}
|
|
|
|
module.exports = {
|
|
ClientSession,
|
|
ServerSession,
|
|
ServerSessionPool,
|
|
TxnState,
|
|
applySession,
|
|
updateSessionFromResponse
|
|
};
|