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467 lines
12 KiB
467 lines
12 KiB
// mgo - MongoDB driver for Go
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//
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// Copyright (c) 2010-2012 - Gustavo Niemeyer <gustavo@niemeyer.net>
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are met:
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//
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// 1. Redistributions of source code must retain the above copyright notice, this
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// list of conditions and the following disclaimer.
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// 2. Redistributions in binary form must reproduce the above copyright notice,
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// this list of conditions and the following disclaimer in the documentation
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// and/or other materials provided with the distribution.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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// ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
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// ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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// ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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package mgo
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import (
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"crypto/md5"
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"crypto/sha1"
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"encoding/hex"
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"errors"
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"fmt"
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"sync"
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"gopkg.in/mgo.v2/bson"
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"gopkg.in/mgo.v2/internal/scram"
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)
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type authCmd struct {
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Authenticate int
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Nonce string
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User string
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Key string
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}
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type startSaslCmd struct {
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StartSASL int `bson:"startSasl"`
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}
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type authResult struct {
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ErrMsg string
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Ok bool
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}
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type getNonceCmd struct {
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GetNonce int
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}
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type getNonceResult struct {
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Nonce string
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Err string "$err"
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Code int
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}
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type logoutCmd struct {
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Logout int
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}
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type saslCmd struct {
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Start int `bson:"saslStart,omitempty"`
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Continue int `bson:"saslContinue,omitempty"`
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ConversationId int `bson:"conversationId,omitempty"`
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Mechanism string `bson:"mechanism,omitempty"`
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Payload []byte
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}
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type saslResult struct {
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Ok bool `bson:"ok"`
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NotOk bool `bson:"code"` // Server <= 2.3.2 returns ok=1 & code>0 on errors (WTF?)
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Done bool
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ConversationId int `bson:"conversationId"`
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Payload []byte
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ErrMsg string
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}
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type saslStepper interface {
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Step(serverData []byte) (clientData []byte, done bool, err error)
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Close()
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}
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func (socket *mongoSocket) getNonce() (nonce string, err error) {
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socket.Lock()
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for socket.cachedNonce == "" && socket.dead == nil {
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debugf("Socket %p to %s: waiting for nonce", socket, socket.addr)
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socket.gotNonce.Wait()
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}
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if socket.cachedNonce == "mongos" {
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socket.Unlock()
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return "", errors.New("Can't authenticate with mongos; see http://j.mp/mongos-auth")
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}
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debugf("Socket %p to %s: got nonce", socket, socket.addr)
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nonce, err = socket.cachedNonce, socket.dead
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socket.cachedNonce = ""
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socket.Unlock()
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if err != nil {
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nonce = ""
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}
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return
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}
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func (socket *mongoSocket) resetNonce() {
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debugf("Socket %p to %s: requesting a new nonce", socket, socket.addr)
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op := &queryOp{}
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op.query = &getNonceCmd{GetNonce: 1}
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op.collection = "admin.$cmd"
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op.limit = -1
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op.replyFunc = func(err error, reply *replyOp, docNum int, docData []byte) {
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if err != nil {
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socket.kill(errors.New("getNonce: "+err.Error()), true)
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return
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}
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result := &getNonceResult{}
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err = bson.Unmarshal(docData, &result)
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if err != nil {
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socket.kill(errors.New("Failed to unmarshal nonce: "+err.Error()), true)
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return
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}
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debugf("Socket %p to %s: nonce unmarshalled: %#v", socket, socket.addr, result)
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if result.Code == 13390 {
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// mongos doesn't yet support auth (see http://j.mp/mongos-auth)
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result.Nonce = "mongos"
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} else if result.Nonce == "" {
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var msg string
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if result.Err != "" {
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msg = fmt.Sprintf("Got an empty nonce: %s (%d)", result.Err, result.Code)
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} else {
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msg = "Got an empty nonce"
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}
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socket.kill(errors.New(msg), true)
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return
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}
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socket.Lock()
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if socket.cachedNonce != "" {
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socket.Unlock()
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panic("resetNonce: nonce already cached")
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}
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socket.cachedNonce = result.Nonce
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socket.gotNonce.Signal()
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socket.Unlock()
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}
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err := socket.Query(op)
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if err != nil {
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socket.kill(errors.New("resetNonce: "+err.Error()), true)
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}
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}
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func (socket *mongoSocket) Login(cred Credential) error {
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socket.Lock()
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if cred.Mechanism == "" && socket.serverInfo.MaxWireVersion >= 3 {
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cred.Mechanism = "SCRAM-SHA-1"
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}
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for _, sockCred := range socket.creds {
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if sockCred == cred {
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debugf("Socket %p to %s: login: db=%q user=%q (already logged in)", socket, socket.addr, cred.Source, cred.Username)
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socket.Unlock()
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return nil
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}
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}
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if socket.dropLogout(cred) {
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debugf("Socket %p to %s: login: db=%q user=%q (cached)", socket, socket.addr, cred.Source, cred.Username)
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socket.creds = append(socket.creds, cred)
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socket.Unlock()
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return nil
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}
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socket.Unlock()
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debugf("Socket %p to %s: login: db=%q user=%q", socket, socket.addr, cred.Source, cred.Username)
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var err error
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switch cred.Mechanism {
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case "", "MONGODB-CR", "MONGO-CR": // Name changed to MONGODB-CR in SERVER-8501.
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err = socket.loginClassic(cred)
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case "PLAIN":
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err = socket.loginPlain(cred)
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case "MONGODB-X509":
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err = socket.loginX509(cred)
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default:
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// Try SASL for everything else, if it is available.
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err = socket.loginSASL(cred)
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}
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if err != nil {
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debugf("Socket %p to %s: login error: %s", socket, socket.addr, err)
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} else {
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debugf("Socket %p to %s: login successful", socket, socket.addr)
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}
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return err
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}
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func (socket *mongoSocket) loginClassic(cred Credential) error {
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// Note that this only works properly because this function is
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// synchronous, which means the nonce won't get reset while we're
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// using it and any other login requests will block waiting for a
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// new nonce provided in the defer call below.
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nonce, err := socket.getNonce()
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if err != nil {
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return err
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}
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defer socket.resetNonce()
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psum := md5.New()
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psum.Write([]byte(cred.Username + ":mongo:" + cred.Password))
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ksum := md5.New()
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ksum.Write([]byte(nonce + cred.Username))
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ksum.Write([]byte(hex.EncodeToString(psum.Sum(nil))))
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key := hex.EncodeToString(ksum.Sum(nil))
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cmd := authCmd{Authenticate: 1, User: cred.Username, Nonce: nonce, Key: key}
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res := authResult{}
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return socket.loginRun(cred.Source, &cmd, &res, func() error {
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if !res.Ok {
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return errors.New(res.ErrMsg)
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}
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socket.Lock()
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socket.dropAuth(cred.Source)
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socket.creds = append(socket.creds, cred)
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socket.Unlock()
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return nil
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})
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}
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type authX509Cmd struct {
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Authenticate int
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User string
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Mechanism string
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}
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func (socket *mongoSocket) loginX509(cred Credential) error {
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cmd := authX509Cmd{Authenticate: 1, User: cred.Username, Mechanism: "MONGODB-X509"}
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res := authResult{}
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return socket.loginRun(cred.Source, &cmd, &res, func() error {
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if !res.Ok {
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return errors.New(res.ErrMsg)
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}
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socket.Lock()
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socket.dropAuth(cred.Source)
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socket.creds = append(socket.creds, cred)
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socket.Unlock()
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return nil
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})
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}
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func (socket *mongoSocket) loginPlain(cred Credential) error {
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cmd := saslCmd{Start: 1, Mechanism: "PLAIN", Payload: []byte("\x00" + cred.Username + "\x00" + cred.Password)}
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res := authResult{}
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return socket.loginRun(cred.Source, &cmd, &res, func() error {
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if !res.Ok {
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return errors.New(res.ErrMsg)
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}
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socket.Lock()
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socket.dropAuth(cred.Source)
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socket.creds = append(socket.creds, cred)
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socket.Unlock()
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return nil
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})
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}
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func (socket *mongoSocket) loginSASL(cred Credential) error {
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var sasl saslStepper
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var err error
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if cred.Mechanism == "SCRAM-SHA-1" {
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// SCRAM is handled without external libraries.
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sasl = saslNewScram(cred)
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} else if len(cred.ServiceHost) > 0 {
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sasl, err = saslNew(cred, cred.ServiceHost)
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} else {
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sasl, err = saslNew(cred, socket.Server().Addr)
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}
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if err != nil {
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return err
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}
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defer sasl.Close()
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// The goal of this logic is to carry a locked socket until the
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// local SASL step confirms the auth is valid; the socket needs to be
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// locked so that concurrent action doesn't leave the socket in an
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// auth state that doesn't reflect the operations that took place.
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// As a simple case, imagine inverting login=>logout to logout=>login.
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//
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// The logic below works because the lock func isn't called concurrently.
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locked := false
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lock := func(b bool) {
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if locked != b {
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locked = b
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if b {
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socket.Lock()
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} else {
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socket.Unlock()
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}
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}
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}
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lock(true)
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defer lock(false)
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start := 1
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cmd := saslCmd{}
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res := saslResult{}
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for {
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payload, done, err := sasl.Step(res.Payload)
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if err != nil {
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return err
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}
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if done && res.Done {
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socket.dropAuth(cred.Source)
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socket.creds = append(socket.creds, cred)
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break
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}
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lock(false)
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cmd = saslCmd{
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Start: start,
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Continue: 1 - start,
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ConversationId: res.ConversationId,
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Mechanism: cred.Mechanism,
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Payload: payload,
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}
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start = 0
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err = socket.loginRun(cred.Source, &cmd, &res, func() error {
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// See the comment on lock for why this is necessary.
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lock(true)
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if !res.Ok || res.NotOk {
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return fmt.Errorf("server returned error on SASL authentication step: %s", res.ErrMsg)
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}
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return nil
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})
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if err != nil {
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return err
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}
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if done && res.Done {
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socket.dropAuth(cred.Source)
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socket.creds = append(socket.creds, cred)
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break
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}
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}
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return nil
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}
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func saslNewScram(cred Credential) *saslScram {
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credsum := md5.New()
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credsum.Write([]byte(cred.Username + ":mongo:" + cred.Password))
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client := scram.NewClient(sha1.New, cred.Username, hex.EncodeToString(credsum.Sum(nil)))
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return &saslScram{cred: cred, client: client}
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}
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type saslScram struct {
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cred Credential
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client *scram.Client
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}
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func (s *saslScram) Close() {}
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func (s *saslScram) Step(serverData []byte) (clientData []byte, done bool, err error) {
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more := s.client.Step(serverData)
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return s.client.Out(), !more, s.client.Err()
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}
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func (socket *mongoSocket) loginRun(db string, query, result interface{}, f func() error) error {
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var mutex sync.Mutex
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var replyErr error
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mutex.Lock()
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op := queryOp{}
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op.query = query
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op.collection = db + ".$cmd"
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op.limit = -1
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op.replyFunc = func(err error, reply *replyOp, docNum int, docData []byte) {
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defer mutex.Unlock()
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if err != nil {
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replyErr = err
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return
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}
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err = bson.Unmarshal(docData, result)
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if err != nil {
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replyErr = err
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} else {
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// Must handle this within the read loop for the socket, so
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// that concurrent login requests are properly ordered.
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replyErr = f()
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}
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}
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err := socket.Query(&op)
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if err != nil {
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return err
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}
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mutex.Lock() // Wait.
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return replyErr
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}
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func (socket *mongoSocket) Logout(db string) {
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socket.Lock()
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cred, found := socket.dropAuth(db)
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if found {
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debugf("Socket %p to %s: logout: db=%q (flagged)", socket, socket.addr, db)
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socket.logout = append(socket.logout, cred)
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}
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socket.Unlock()
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}
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func (socket *mongoSocket) LogoutAll() {
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socket.Lock()
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if l := len(socket.creds); l > 0 {
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debugf("Socket %p to %s: logout all (flagged %d)", socket, socket.addr, l)
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socket.logout = append(socket.logout, socket.creds...)
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socket.creds = socket.creds[0:0]
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}
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socket.Unlock()
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}
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func (socket *mongoSocket) flushLogout() (ops []interface{}) {
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socket.Lock()
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if l := len(socket.logout); l > 0 {
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debugf("Socket %p to %s: logout all (flushing %d)", socket, socket.addr, l)
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for i := 0; i != l; i++ {
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op := queryOp{}
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op.query = &logoutCmd{1}
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op.collection = socket.logout[i].Source + ".$cmd"
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op.limit = -1
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ops = append(ops, &op)
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}
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socket.logout = socket.logout[0:0]
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}
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socket.Unlock()
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return
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}
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func (socket *mongoSocket) dropAuth(db string) (cred Credential, found bool) {
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for i, sockCred := range socket.creds {
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if sockCred.Source == db {
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copy(socket.creds[i:], socket.creds[i+1:])
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socket.creds = socket.creds[:len(socket.creds)-1]
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return sockCred, true
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}
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}
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return cred, false
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}
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func (socket *mongoSocket) dropLogout(cred Credential) (found bool) {
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for i, sockCred := range socket.logout {
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if sockCred == cred {
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copy(socket.logout[i:], socket.logout[i+1:])
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socket.logout = socket.logout[:len(socket.logout)-1]
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return true
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}
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}
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return false
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}
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