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https://github.com/ergochat/ergo.git
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173 lines
4.2 KiB
Go
173 lines
4.2 KiB
Go
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package oauth2
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/*
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https://github.com/emersion/go-sasl/blob/e73c9f7bad438a9bf3f5b28e661b74d752ecafdd/oauthbearer.go
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Copyright 2019-2022 Simon Ser, Frode Aannevik, Max Mazurov
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Released under the MIT license
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*/
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import (
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"bytes"
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"encoding/json"
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"errors"
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"fmt"
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"strconv"
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"strings"
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)
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var (
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ErrUnexpectedClientResponse = errors.New("unexpected client response")
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)
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// The OAUTHBEARER mechanism name.
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const OAuthBearer = "OAUTHBEARER"
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type OAuthBearerError struct {
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Status string `json:"status"`
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Schemes string `json:"schemes"`
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Scope string `json:"scope"`
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}
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type OAuthBearerOptions struct {
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Username string `json:"username,omitempty"`
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Token string `json:"token,omitempty"`
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Host string `json:"host,omitempty"`
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Port int `json:"port,omitempty"`
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}
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func (err *OAuthBearerError) Error() string {
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return fmt.Sprintf("OAUTHBEARER authentication error (%v)", err.Status)
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}
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type OAuthBearerAuthenticator func(opts OAuthBearerOptions) *OAuthBearerError
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type OAuthBearerServer struct {
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done bool
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failErr error
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authenticate OAuthBearerAuthenticator
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}
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func (a *OAuthBearerServer) fail(descr string) ([]byte, bool, error) {
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blob, err := json.Marshal(OAuthBearerError{
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Status: "invalid_request",
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Schemes: "bearer",
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})
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if err != nil {
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panic(err) // wtf
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}
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a.failErr = errors.New(descr)
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return blob, false, nil
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}
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func (a *OAuthBearerServer) Next(response []byte) (challenge []byte, done bool, err error) {
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// Per RFC, we cannot just send an error, we need to return JSON-structured
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// value as a challenge and then after getting dummy response from the
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// client stop the exchange.
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if a.failErr != nil {
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// Server libraries (go-smtp, go-imap) will not call Next on
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// protocol-specific SASL cancel response ('*'). However, GS2 (and
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// indirectly OAUTHBEARER) defines a protocol-independent way to do so
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// using 0x01.
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if len(response) != 1 && response[0] != 0x01 {
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return nil, true, errors.New("unexpected response")
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}
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return nil, true, a.failErr
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}
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if a.done {
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err = ErrUnexpectedClientResponse
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return
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}
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// Generate empty challenge.
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if response == nil {
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return []byte{}, false, nil
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}
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a.done = true
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// Cut n,a=username,\x01host=...\x01auth=...
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// into
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// n
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// a=username
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// \x01host=...\x01auth=...\x01\x01
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parts := bytes.SplitN(response, []byte{','}, 3)
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if len(parts) != 3 {
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return a.fail("Invalid response")
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}
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flag := parts[0]
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authzid := parts[1]
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if !bytes.Equal(flag, []byte{'n'}) {
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return a.fail("Invalid response, missing 'n' in gs2-cb-flag")
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}
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opts := OAuthBearerOptions{}
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if len(authzid) > 0 {
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if !bytes.HasPrefix(authzid, []byte("a=")) {
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return a.fail("Invalid response, missing 'a=' in gs2-authzid")
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}
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opts.Username = string(bytes.TrimPrefix(authzid, []byte("a=")))
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}
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// Cut \x01host=...\x01auth=...\x01\x01
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// into
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// *empty*
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// host=...
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// auth=...
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// *empty*
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//
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// Note that this code does not do a lot of checks to make sure the input
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// follows the exact format specified by RFC.
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params := bytes.Split(parts[2], []byte{0x01})
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for _, p := range params {
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// Skip empty fields (one at start and end).
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if len(p) == 0 {
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continue
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}
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pParts := bytes.SplitN(p, []byte{'='}, 2)
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if len(pParts) != 2 {
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return a.fail("Invalid response, missing '='")
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}
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switch string(pParts[0]) {
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case "host":
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opts.Host = string(pParts[1])
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case "port":
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port, err := strconv.ParseUint(string(pParts[1]), 10, 16)
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if err != nil {
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return a.fail("Invalid response, malformed 'port' value")
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}
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opts.Port = int(port)
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case "auth":
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const prefix = "bearer "
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strValue := string(pParts[1])
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// Token type is case-insensitive.
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if !strings.HasPrefix(strings.ToLower(strValue), prefix) {
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return a.fail("Unsupported token type")
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}
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opts.Token = strValue[len(prefix):]
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default:
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return a.fail("Invalid response, unknown parameter: " + string(pParts[0]))
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}
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}
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authzErr := a.authenticate(opts)
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if authzErr != nil {
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blob, err := json.Marshal(authzErr)
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if err != nil {
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panic(err) // wtf
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}
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a.failErr = authzErr
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return blob, false, nil
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}
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return nil, true, nil
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}
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func NewOAuthBearerServer(auth OAuthBearerAuthenticator) *OAuthBearerServer {
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return &OAuthBearerServer{
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authenticate: auth,
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}
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}
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