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327 lines
10 KiB
Go
327 lines
10 KiB
Go
// Package SASL implements a client for Simple Authentication and Security Layer, RFC 4422.
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//
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// Supported authentication mechanisms:
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//
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// - EXTERNAL
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// - SCRAM-SHA-256-PLUS
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// - SCRAM-SHA-1-PLUS
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// - SCRAM-SHA-256
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// - SCRAM-SHA-1
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// - CRAM-MD5
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// - PLAIN
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// - LOGIN
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package sasl
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import (
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"crypto/md5"
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"crypto/sha1"
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"crypto/sha256"
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"crypto/tls"
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"fmt"
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"hash"
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"strings"
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"golang.org/x/text/secure/precis"
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"github.com/mjl-/mox/scram"
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)
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// Client is a SASL client.
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//
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// A SASL client can be used for authentication in IMAP, SMTP and other protocols.
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// A client and server exchange messages in step lock. In IMAP and SMTP, these
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// messages are encoded with base64. Each SASL mechanism has predefined steps, but
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// the transaction can be aborted by either side at any time. An IMAP or SMTP
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// client must choose a SASL mechanism, instantiate a SASL client, and call Next
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// with a nil parameter. The resulting data must be written to the server, properly
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// encoded. The client must then read the response from the server and feed it to
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// the SASL client, which will return more data to send, or an error.
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type Client interface {
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// Name as used in SMTP or IMAP authentication, e.g. PLAIN, CRAM-MD5,
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// SCRAM-SHA-256. cleartextCredentials indicates if credentials are exchanged in
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// clear text, which can be used to decide if the exchange is logged.
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Info() (name string, cleartextCredentials bool)
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// Next must be called for each step of the SASL transaction. The first call has a
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// nil fromServer and serves to get a possible "initial response" from the client
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// to the server. When last is true, the message from client to server is the last
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// one, and the server must send a verdict. If err is set, the transaction must be
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// aborted.
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//
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// For the first toServer ("initial response"), a nil toServer indicates there is
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// no data, which is different from a non-nil zero-length toServer.
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Next(fromServer []byte) (toServer []byte, last bool, err error)
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}
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type clientPlain struct {
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Username, Password string
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step int
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}
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var _ Client = (*clientPlain)(nil)
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// NewClientPlain returns a client for SASL PLAIN authentication.
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//
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// PLAIN is specified in RFC 4616, The PLAIN Simple Authentication and Security
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// Layer (SASL) Mechanism.
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func NewClientPlain(username, password string) Client {
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// No "precis" processing, remote can clean password up. ../rfc/8265:679
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return &clientPlain{username, password, 0}
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}
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func (a *clientPlain) Info() (name string, hasCleartextCredentials bool) {
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return "PLAIN", true
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}
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func (a *clientPlain) Next(fromServer []byte) (toServer []byte, last bool, rerr error) {
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defer func() { a.step++ }()
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switch a.step {
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case 0:
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return []byte(fmt.Sprintf("\u0000%s\u0000%s", a.Username, a.Password)), true, nil
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default:
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return nil, false, fmt.Errorf("invalid step %d", a.step)
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}
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}
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type clientLogin struct {
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Username, Password string
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step int
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}
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var _ Client = (*clientLogin)(nil)
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// NewClientLogin returns a client for the obsolete SASL LOGIN authentication.
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//
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// See https://datatracker.ietf.org/doc/html/draft-murchison-sasl-login-00
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func NewClientLogin(username, password string) Client {
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// No "precis" processing, remote can clean password up. ../rfc/8265:679
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return &clientLogin{username, password, 0}
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}
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func (a *clientLogin) Info() (name string, hasCleartextCredentials bool) {
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return "LOGIN", true
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}
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func (a *clientLogin) Next(fromServer []byte) (toServer []byte, last bool, rerr error) {
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defer func() { a.step++ }()
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switch a.step {
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case 0:
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return []byte(a.Username), false, nil
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case 1:
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return []byte(a.Password), true, nil
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default:
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return nil, false, fmt.Errorf("invalid step %d", a.step)
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}
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}
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// Cleanup password with precis, like remote should have done. If the password
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// appears invalid, we'll return the original, there is a chance the server also
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// doesn't enforce requirements and accepts it. ../rfc/8265:679
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func precisPassword(password string) string {
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pw, err := precis.OpaqueString.String(password)
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if err != nil {
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return password
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}
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return pw
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}
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type clientCRAMMD5 struct {
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Username, Password string
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step int
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}
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var _ Client = (*clientCRAMMD5)(nil)
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// NewClientCRAMMD5 returns a client for SASL CRAM-MD5 authentication.
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//
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// CRAM-MD5 is specified in RFC 2195, IMAP/POP AUTHorize Extension for Simple
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// Challenge/Response.
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func NewClientCRAMMD5(username, password string) Client {
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password = precisPassword(password)
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return &clientCRAMMD5{username, password, 0}
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}
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func (a *clientCRAMMD5) Info() (name string, hasCleartextCredentials bool) {
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return "CRAM-MD5", false
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}
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func (a *clientCRAMMD5) Next(fromServer []byte) (toServer []byte, last bool, rerr error) {
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defer func() { a.step++ }()
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switch a.step {
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case 0:
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return nil, false, nil
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case 1:
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// Validate the challenge.
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// ../rfc/2195:82
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s := string(fromServer)
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if !strings.HasPrefix(s, "<") || !strings.HasSuffix(s, ">") {
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return nil, false, fmt.Errorf("invalid challenge, missing angle brackets")
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}
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t := strings.SplitN(s, ".", 2)
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if len(t) != 2 || t[0] == "" {
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return nil, false, fmt.Errorf("invalid challenge, missing dot or random digits")
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}
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t = strings.Split(t[1], "@")
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if len(t) == 1 || t[0] == "" || t[len(t)-1] == "" {
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return nil, false, fmt.Errorf("invalid challenge, empty timestamp or empty hostname")
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}
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// ../rfc/2195:138
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key := []byte(a.Password)
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if len(key) > 64 {
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t := md5.Sum(key)
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key = t[:]
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}
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ipad := make([]byte, md5.BlockSize)
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opad := make([]byte, md5.BlockSize)
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copy(ipad, key)
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copy(opad, key)
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for i := range ipad {
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ipad[i] ^= 0x36
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opad[i] ^= 0x5c
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}
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ipadh := md5.New()
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ipadh.Write(ipad)
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ipadh.Write([]byte(fromServer))
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opadh := md5.New()
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opadh.Write(opad)
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opadh.Write(ipadh.Sum(nil))
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// ../rfc/2195:88
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return []byte(fmt.Sprintf("%s %x", a.Username, opadh.Sum(nil))), true, nil
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default:
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return nil, false, fmt.Errorf("invalid step %d", a.step)
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}
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}
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type clientSCRAMSHA struct {
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Username, Password string
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hash func() hash.Hash
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plus bool
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cs tls.ConnectionState
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// When not doing PLUS variant, this field indicates whether that is because the
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// server doesn't support the PLUS variant. Used for detecting MitM attempts.
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noServerPlus bool
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name string
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step int
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scram *scram.Client
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}
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var _ Client = (*clientSCRAMSHA)(nil)
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// NewClientSCRAMSHA1 returns a client for SASL SCRAM-SHA-1 authentication.
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//
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// Clients should prefer using the PLUS-variant with TLS channel binding, if
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// supported by a server. If noServerPlus is set, this mechanism was chosen because
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// the PLUS-variant was not supported by the server. If the server actually does
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// implement the PLUS variant, this can indicate a MitM attempt, which is detected
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// by the server and causes the authentication attempt to be aborted.
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//
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// SCRAM-SHA-1 is specified in RFC 5802, "Salted Challenge Response Authentication
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// Mechanism (SCRAM) SASL and GSS-API Mechanisms".
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func NewClientSCRAMSHA1(username, password string, noServerPlus bool) Client {
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password = precisPassword(password)
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return &clientSCRAMSHA{username, password, sha1.New, false, tls.ConnectionState{}, noServerPlus, "SCRAM-SHA-1", 0, nil}
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}
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// NewClientSCRAMSHA1PLUS returns a client for SASL SCRAM-SHA-1-PLUS authentication.
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//
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// The PLUS-variant binds the authentication exchange to the TLS connection,
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// detecting any MitM attempt.
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//
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// SCRAM-SHA-1-PLUS is specified in RFC 5802, "Salted Challenge Response
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// Authentication Mechanism (SCRAM) SASL and GSS-API Mechanisms".
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func NewClientSCRAMSHA1PLUS(username, password string, cs tls.ConnectionState) Client {
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password = precisPassword(password)
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return &clientSCRAMSHA{username, password, sha1.New, true, cs, false, "SCRAM-SHA-1-PLUS", 0, nil}
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}
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// NewClientSCRAMSHA256 returns a client for SASL SCRAM-SHA-256 authentication.
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//
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// Clients should prefer using the PLUS-variant with TLS channel binding, if
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// supported by a server. If noServerPlus is set, this mechanism was chosen because
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// the PLUS-variant was not supported by the server. If the server actually does
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// implement the PLUS variant, this can indicate a MitM attempt, which is detected
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// by the server and causes the authentication attempt to be aborted.
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//
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// SCRAM-SHA-256 is specified in RFC 7677, "SCRAM-SHA-256 and SCRAM-SHA-256-PLUS
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// Simple Authentication and Security Layer (SASL) Mechanisms".
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func NewClientSCRAMSHA256(username, password string, noServerPlus bool) Client {
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password = precisPassword(password)
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return &clientSCRAMSHA{username, password, sha256.New, false, tls.ConnectionState{}, noServerPlus, "SCRAM-SHA-256", 0, nil}
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}
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// NewClientSCRAMSHA256PLUS returns a client for SASL SCRAM-SHA-256-PLUS authentication.
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//
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// The PLUS-variant binds the authentication exchange to the TLS connection,
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// detecting any MitM attempt.
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//
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// SCRAM-SHA-256-PLUS is specified in RFC 7677, "SCRAM-SHA-256 and SCRAM-SHA-256-PLUS
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// Simple Authentication and Security Layer (SASL) Mechanisms".
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func NewClientSCRAMSHA256PLUS(username, password string, cs tls.ConnectionState) Client {
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password = precisPassword(password)
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return &clientSCRAMSHA{username, password, sha256.New, true, cs, false, "SCRAM-SHA-256-PLUS", 0, nil}
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}
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func (a *clientSCRAMSHA) Info() (name string, hasCleartextCredentials bool) {
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return a.name, false
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}
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func (a *clientSCRAMSHA) Next(fromServer []byte) (toServer []byte, last bool, rerr error) {
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defer func() { a.step++ }()
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switch a.step {
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case 0:
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var cs *tls.ConnectionState
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if a.plus {
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cs = &a.cs
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}
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a.scram = scram.NewClient(a.hash, a.Username, "", a.noServerPlus, cs)
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toserver, err := a.scram.ClientFirst()
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return []byte(toserver), false, err
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case 1:
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clientFinal, err := a.scram.ServerFirst(fromServer, a.Password)
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return []byte(clientFinal), false, err
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case 2:
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err := a.scram.ServerFinal(fromServer)
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return nil, true, err
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default:
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return nil, false, fmt.Errorf("invalid step %d", a.step)
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}
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}
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type clientExternal struct {
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Username string
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step int
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}
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var _ Client = (*clientExternal)(nil)
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// NewClientExternal returns a client for SASL EXTERNAL authentication.
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//
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// Username is optional.
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func NewClientExternal(username string) Client {
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return &clientExternal{username, 0}
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}
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func (a *clientExternal) Info() (name string, hasCleartextCredentials bool) {
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return "EXTERNAL", false
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}
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func (a *clientExternal) Next(fromServer []byte) (toServer []byte, last bool, rerr error) {
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defer func() { a.step++ }()
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switch a.step {
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case 0:
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return []byte(a.Username), true, nil
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default:
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return nil, false, fmt.Errorf("invalid step %d", a.step)
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}
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}
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