392 lines
17 KiB
JavaScript
392 lines
17 KiB
JavaScript
"use strict";
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Object.defineProperty(exports, "__esModule", { value: true });
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exports.LEGAL_TCP_SOCKET_OPTIONS = exports.LEGAL_TLS_SOCKET_OPTIONS = exports.connect = void 0;
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const net = require("net");
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const socks_1 = require("socks");
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const tls = require("tls");
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const bson_1 = require("../bson");
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const constants_1 = require("../constants");
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const error_1 = require("../error");
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const utils_1 = require("../utils");
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const auth_provider_1 = require("./auth/auth_provider");
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const gssapi_1 = require("./auth/gssapi");
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const mongocr_1 = require("./auth/mongocr");
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const mongodb_aws_1 = require("./auth/mongodb_aws");
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const plain_1 = require("./auth/plain");
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const providers_1 = require("./auth/providers");
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const scram_1 = require("./auth/scram");
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const x509_1 = require("./auth/x509");
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const connection_1 = require("./connection");
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const constants_2 = require("./wire_protocol/constants");
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const AUTH_PROVIDERS = new Map([
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[providers_1.AuthMechanism.MONGODB_AWS, new mongodb_aws_1.MongoDBAWS()],
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[providers_1.AuthMechanism.MONGODB_CR, new mongocr_1.MongoCR()],
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[providers_1.AuthMechanism.MONGODB_GSSAPI, new gssapi_1.GSSAPI()],
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[providers_1.AuthMechanism.MONGODB_PLAIN, new plain_1.Plain()],
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[providers_1.AuthMechanism.MONGODB_SCRAM_SHA1, new scram_1.ScramSHA1()],
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[providers_1.AuthMechanism.MONGODB_SCRAM_SHA256, new scram_1.ScramSHA256()],
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[providers_1.AuthMechanism.MONGODB_X509, new x509_1.X509()]
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]);
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const FAKE_MONGODB_SERVICE_ID = typeof process.env.FAKE_MONGODB_SERVICE_ID === 'string' &&
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process.env.FAKE_MONGODB_SERVICE_ID.toLowerCase() === 'true';
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function connect(options, callback) {
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makeConnection({ ...options, existingSocket: undefined }, (err, socket) => {
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var _a;
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if (err || !socket) {
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return callback(err);
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}
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let ConnectionType = (_a = options.connectionType) !== null && _a !== void 0 ? _a : connection_1.Connection;
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if (options.autoEncrypter) {
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ConnectionType = connection_1.CryptoConnection;
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}
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performInitialHandshake(new ConnectionType(socket, options), options, callback);
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});
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}
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exports.connect = connect;
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function checkSupportedServer(hello, options) {
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var _a;
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const serverVersionHighEnough = hello &&
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(typeof hello.maxWireVersion === 'number' || hello.maxWireVersion instanceof bson_1.Int32) &&
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hello.maxWireVersion >= constants_2.MIN_SUPPORTED_WIRE_VERSION;
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const serverVersionLowEnough = hello &&
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(typeof hello.minWireVersion === 'number' || hello.minWireVersion instanceof bson_1.Int32) &&
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hello.minWireVersion <= constants_2.MAX_SUPPORTED_WIRE_VERSION;
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if (serverVersionHighEnough) {
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if (serverVersionLowEnough) {
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return null;
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}
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const message = `Server at ${options.hostAddress} reports minimum wire version ${JSON.stringify(hello.minWireVersion)}, but this version of the Node.js Driver requires at most ${constants_2.MAX_SUPPORTED_WIRE_VERSION} (MongoDB ${constants_2.MAX_SUPPORTED_SERVER_VERSION})`;
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return new error_1.MongoCompatibilityError(message);
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}
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const message = `Server at ${options.hostAddress} reports maximum wire version ${(_a = JSON.stringify(hello.maxWireVersion)) !== null && _a !== void 0 ? _a : 0}, but this version of the Node.js Driver requires at least ${constants_2.MIN_SUPPORTED_WIRE_VERSION} (MongoDB ${constants_2.MIN_SUPPORTED_SERVER_VERSION})`;
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return new error_1.MongoCompatibilityError(message);
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}
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function performInitialHandshake(conn, options, _callback) {
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const callback = function (err, ret) {
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if (err && conn) {
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conn.destroy();
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}
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_callback(err, ret);
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};
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const credentials = options.credentials;
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if (credentials) {
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if (!(credentials.mechanism === providers_1.AuthMechanism.MONGODB_DEFAULT) &&
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!AUTH_PROVIDERS.get(credentials.mechanism)) {
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callback(new error_1.MongoInvalidArgumentError(`AuthMechanism '${credentials.mechanism}' not supported`));
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return;
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}
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}
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const authContext = new auth_provider_1.AuthContext(conn, credentials, options);
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prepareHandshakeDocument(authContext, (err, handshakeDoc) => {
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if (err || !handshakeDoc) {
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return callback(err);
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}
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const handshakeOptions = Object.assign({}, options);
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if (typeof options.connectTimeoutMS === 'number') {
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// The handshake technically is a monitoring check, so its socket timeout should be connectTimeoutMS
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handshakeOptions.socketTimeoutMS = options.connectTimeoutMS;
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}
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const start = new Date().getTime();
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conn.command((0, utils_1.ns)('admin.$cmd'), handshakeDoc, handshakeOptions, (err, response) => {
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if (err) {
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callback(err);
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return;
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}
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if ((response === null || response === void 0 ? void 0 : response.ok) === 0) {
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callback(new error_1.MongoServerError(response));
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return;
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}
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if (!('isWritablePrimary' in response)) {
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// Provide hello-style response document.
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response.isWritablePrimary = response[constants_1.LEGACY_HELLO_COMMAND];
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}
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if (response.helloOk) {
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conn.helloOk = true;
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}
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const supportedServerErr = checkSupportedServer(response, options);
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if (supportedServerErr) {
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callback(supportedServerErr);
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return;
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}
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if (options.loadBalanced) {
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// TODO: Durran: Remove when server support exists. (NODE-3431)
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if (FAKE_MONGODB_SERVICE_ID) {
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response.serviceId = response.topologyVersion.processId;
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}
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if (!response.serviceId) {
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return callback(new error_1.MongoCompatibilityError('Driver attempted to initialize in load balancing mode, ' +
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'but the server does not support this mode.'));
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}
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}
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// NOTE: This is metadata attached to the connection while porting away from
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// handshake being done in the `Server` class. Likely, it should be
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// relocated, or at very least restructured.
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conn.hello = response;
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conn.lastHelloMS = new Date().getTime() - start;
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if (!response.arbiterOnly && credentials) {
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// store the response on auth context
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authContext.response = response;
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const resolvedCredentials = credentials.resolveAuthMechanism(response);
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const provider = AUTH_PROVIDERS.get(resolvedCredentials.mechanism);
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if (!provider) {
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return callback(new error_1.MongoInvalidArgumentError(`No AuthProvider for ${resolvedCredentials.mechanism} defined.`));
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}
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provider.auth(authContext, err => {
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if (err)
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return callback(err);
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callback(undefined, conn);
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});
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return;
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}
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callback(undefined, conn);
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});
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});
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}
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function prepareHandshakeDocument(authContext, callback) {
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const options = authContext.options;
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const compressors = options.compressors ? options.compressors : [];
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const { serverApi } = authContext.connection;
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const handshakeDoc = {
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[(serverApi === null || serverApi === void 0 ? void 0 : serverApi.version) ? 'hello' : constants_1.LEGACY_HELLO_COMMAND]: true,
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helloOk: true,
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client: options.metadata || (0, utils_1.makeClientMetadata)(options),
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compression: compressors,
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loadBalanced: options.loadBalanced
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};
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const credentials = authContext.credentials;
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if (credentials) {
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if (credentials.mechanism === providers_1.AuthMechanism.MONGODB_DEFAULT && credentials.username) {
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handshakeDoc.saslSupportedMechs = `${credentials.source}.${credentials.username}`;
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const provider = AUTH_PROVIDERS.get(providers_1.AuthMechanism.MONGODB_SCRAM_SHA256);
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if (!provider) {
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// This auth mechanism is always present.
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return callback(new error_1.MongoInvalidArgumentError(`No AuthProvider for ${providers_1.AuthMechanism.MONGODB_SCRAM_SHA256} defined.`));
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}
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return provider.prepare(handshakeDoc, authContext, callback);
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}
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const provider = AUTH_PROVIDERS.get(credentials.mechanism);
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if (!provider) {
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return callback(new error_1.MongoInvalidArgumentError(`No AuthProvider for ${credentials.mechanism} defined.`));
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}
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return provider.prepare(handshakeDoc, authContext, callback);
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}
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callback(undefined, handshakeDoc);
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}
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/** @public */
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exports.LEGAL_TLS_SOCKET_OPTIONS = [
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'ALPNProtocols',
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'ca',
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'cert',
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'checkServerIdentity',
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'ciphers',
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'crl',
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'ecdhCurve',
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'key',
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'minDHSize',
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'passphrase',
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'pfx',
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'rejectUnauthorized',
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'secureContext',
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'secureProtocol',
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'servername',
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'session'
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];
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/** @public */
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exports.LEGAL_TCP_SOCKET_OPTIONS = [
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'family',
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'hints',
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'localAddress',
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'localPort',
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'lookup'
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];
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function parseConnectOptions(options) {
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const hostAddress = options.hostAddress;
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if (!hostAddress)
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throw new error_1.MongoInvalidArgumentError('Option "hostAddress" is required');
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const result = {};
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for (const name of exports.LEGAL_TCP_SOCKET_OPTIONS) {
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if (options[name] != null) {
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result[name] = options[name];
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}
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}
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if (typeof hostAddress.socketPath === 'string') {
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result.path = hostAddress.socketPath;
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return result;
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}
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else if (typeof hostAddress.host === 'string') {
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result.host = hostAddress.host;
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result.port = hostAddress.port;
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return result;
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}
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else {
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// This should never happen since we set up HostAddresses
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// But if we don't throw here the socket could hang until timeout
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// TODO(NODE-3483)
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throw new error_1.MongoRuntimeError(`Unexpected HostAddress ${JSON.stringify(hostAddress)}`);
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}
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}
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function parseSslOptions(options) {
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const result = parseConnectOptions(options);
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// Merge in valid SSL options
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for (const name of exports.LEGAL_TLS_SOCKET_OPTIONS) {
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if (options[name] != null) {
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result[name] = options[name];
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}
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}
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if (options.existingSocket) {
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result.socket = options.existingSocket;
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}
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// Set default sni servername to be the same as host
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if (result.servername == null && result.host && !net.isIP(result.host)) {
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result.servername = result.host;
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}
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return result;
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}
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const SOCKET_ERROR_EVENT_LIST = ['error', 'close', 'timeout', 'parseError'];
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const SOCKET_ERROR_EVENTS = new Set(SOCKET_ERROR_EVENT_LIST);
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function makeConnection(options, _callback) {
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var _a, _b, _c, _d, _e, _f, _g, _h, _j;
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const useTLS = (_a = options.tls) !== null && _a !== void 0 ? _a : false;
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const keepAlive = (_b = options.keepAlive) !== null && _b !== void 0 ? _b : true;
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const socketTimeoutMS = (_d = (_c = options.socketTimeoutMS) !== null && _c !== void 0 ? _c : Reflect.get(options, 'socketTimeout')) !== null && _d !== void 0 ? _d : 0;
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const noDelay = (_e = options.noDelay) !== null && _e !== void 0 ? _e : true;
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const connectTimeoutMS = (_f = options.connectTimeoutMS) !== null && _f !== void 0 ? _f : 30000;
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const rejectUnauthorized = (_g = options.rejectUnauthorized) !== null && _g !== void 0 ? _g : true;
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const keepAliveInitialDelay = (_j = (((_h = options.keepAliveInitialDelay) !== null && _h !== void 0 ? _h : 120000) > socketTimeoutMS
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? Math.round(socketTimeoutMS / 2)
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: options.keepAliveInitialDelay)) !== null && _j !== void 0 ? _j : 120000;
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const existingSocket = options.existingSocket;
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let socket;
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const callback = function (err, ret) {
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if (err && socket) {
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socket.destroy();
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}
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_callback(err, ret);
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};
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if (options.proxyHost != null) {
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// Currently, only Socks5 is supported.
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return makeSocks5Connection({
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...options,
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connectTimeoutMS // Should always be present for Socks5
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}, callback);
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}
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if (useTLS) {
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const tlsSocket = tls.connect(parseSslOptions(options));
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if (typeof tlsSocket.disableRenegotiation === 'function') {
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tlsSocket.disableRenegotiation();
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}
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socket = tlsSocket;
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}
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else if (existingSocket) {
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// In the TLS case, parseSslOptions() sets options.socket to existingSocket,
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// so we only need to handle the non-TLS case here (where existingSocket
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// gives us all we need out of the box).
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socket = existingSocket;
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}
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else {
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socket = net.createConnection(parseConnectOptions(options));
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}
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socket.setKeepAlive(keepAlive, keepAliveInitialDelay);
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socket.setTimeout(connectTimeoutMS);
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socket.setNoDelay(noDelay);
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const connectEvent = useTLS ? 'secureConnect' : 'connect';
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let cancellationHandler;
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function errorHandler(eventName) {
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return (err) => {
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SOCKET_ERROR_EVENTS.forEach(event => socket.removeAllListeners(event));
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if (cancellationHandler && options.cancellationToken) {
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options.cancellationToken.removeListener('cancel', cancellationHandler);
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}
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socket.removeListener(connectEvent, connectHandler);
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callback(connectionFailureError(eventName, err));
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};
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}
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function connectHandler() {
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SOCKET_ERROR_EVENTS.forEach(event => socket.removeAllListeners(event));
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if (cancellationHandler && options.cancellationToken) {
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options.cancellationToken.removeListener('cancel', cancellationHandler);
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}
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if ('authorizationError' in socket) {
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if (socket.authorizationError && rejectUnauthorized) {
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return callback(socket.authorizationError);
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}
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}
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socket.setTimeout(socketTimeoutMS);
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callback(undefined, socket);
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}
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SOCKET_ERROR_EVENTS.forEach(event => socket.once(event, errorHandler(event)));
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if (options.cancellationToken) {
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cancellationHandler = errorHandler('cancel');
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options.cancellationToken.once('cancel', cancellationHandler);
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}
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if (existingSocket) {
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process.nextTick(connectHandler);
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}
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else {
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socket.once(connectEvent, connectHandler);
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}
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}
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function makeSocks5Connection(options, callback) {
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var _a, _b;
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const hostAddress = utils_1.HostAddress.fromHostPort((_a = options.proxyHost) !== null && _a !== void 0 ? _a : '', // proxyHost is guaranteed to set here
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(_b = options.proxyPort) !== null && _b !== void 0 ? _b : 1080);
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// First, connect to the proxy server itself:
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makeConnection({
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...options,
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hostAddress,
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tls: false,
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proxyHost: undefined
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}, (err, rawSocket) => {
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if (err) {
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return callback(err);
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}
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const destination = parseConnectOptions(options);
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if (typeof destination.host !== 'string' || typeof destination.port !== 'number') {
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return callback(new error_1.MongoInvalidArgumentError('Can only make Socks5 connections to TCP hosts'));
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}
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// Then, establish the Socks5 proxy connection:
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socks_1.SocksClient.createConnection({
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existing_socket: rawSocket,
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timeout: options.connectTimeoutMS,
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command: 'connect',
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destination: {
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host: destination.host,
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port: destination.port
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},
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proxy: {
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// host and port are ignored because we pass existing_socket
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host: 'iLoveJavaScript',
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port: 0,
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type: 5,
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userId: options.proxyUsername || undefined,
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password: options.proxyPassword || undefined
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}
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}, (err, info) => {
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if (err) {
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return callback(connectionFailureError('error', err));
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}
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// Finally, now treat the resulting duplex stream as the
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// socket over which we send and receive wire protocol messages:
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makeConnection({
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...options,
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existingSocket: info.socket,
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proxyHost: undefined
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}, callback);
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});
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});
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}
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function connectionFailureError(type, err) {
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switch (type) {
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case 'error':
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return new error_1.MongoNetworkError(err);
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case 'timeout':
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return new error_1.MongoNetworkTimeoutError('connection timed out');
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case 'close':
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return new error_1.MongoNetworkError('connection closed');
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case 'cancel':
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return new error_1.MongoNetworkError('connection establishment was cancelled');
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default:
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return new error_1.MongoNetworkError('unknown network error');
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}
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}
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//# sourceMappingURL=connect.js.map
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