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main.go
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main.go
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package main
import (
"context"
"encoding/binary"
"encoding/hex"
"encoding/json"
"flag"
"fmt"
"net/http"
"os"
"strconv"
"strings"
"time"
"github.com/BurntSushi/toml"
"github.com/agl/ed25519"
couch "github.com/fjl/go-couchdb"
"github.com/gorilla/handlers"
"github.com/gorilla/mux"
"github.com/juju/errors"
mh "github.com/multiformats/go-multihash"
"github.com/op/go-logging"
ses "github.com/sourcegraph/go-ses"
)
var router = mux.NewRouter()
var log = logging.MustGetLogger("outbox")
var couchClient *couch.Client
var usersDB *couch.DB
const factorEmailSubject = "2FA Login Request"
const factorEmailBody = `Someone has requested a 2FA Login with your account.
To log in, click the following link:
%s`
const loginAPIHost = "http://yourhostname.com"
const factorEndpoint = "/factor"
const fromEmail = "noreply@yourhostname.com"
var emailConfig ses.Config
// stored in users db to handle login challenges
type loginData struct {
ID string `json:"_id"`
Rev string `json:"_rev,omitempty"`
SignedTwoFA string `json:"signedTwoFA"`
LastChallenge int64 `json:"lastChallenge"`
PublicSKey string `json:"publicKey"`
EncryptedMnemonic string `json:"encryptedMnemonic"`
MNonce string `json:"mNonce"`
LastToken string `json:"lastToken,omitempty"`
}
type mnemonicReturn struct {
EncryptedMnemonic string `json:"encryptedMnemonic"`
MNonce string `json:"mnemonicNonce"`
}
// all of these values are file paths
type config struct {
Cert string
Key string
CouchURL string
SESEndpoint string
SESAccessKeyID string
SESSecretAccessKey string
}
func main() {
var err error
configFile := flag.String("c", "config.toml", "Path to the config toml file")
flag.Parse()
var conf config
if _, err = toml.DecodeFile(*configFile, &conf); err != nil {
log.Error(err)
os.Exit(1)
}
emailConfig = ses.Config{
Endpoint: conf.SESEndpoint,
AccessKeyID: conf.SESAccessKeyID,
SecretAccessKey: conf.SESSecretAccessKey,
}
couchClient, err = couch.NewClient(conf.CouchURL, nil)
if err != nil {
log.Error(err)
os.Exit(1)
}
usersDB, err = couchClient.EnsureDB("users")
if err != nil {
log.Error(err)
os.Exit(1)
}
ctx, cancel := context.WithCancel(context.Background())
defer cancel()
go deleteLastChallenges(ctx) // remove users last used challenges
go trackMagic() // handles 2FA magic links
router.HandleFunc(factorEndpoint, twoFALink).Methods("GET")
router.HandleFunc("/login", login).Methods("POST")
router.HandleFunc("/register", register).Methods("POST")
cors := handlers.CORS(
handlers.AllowedOrigins([]string{"*"}),
handlers.AllowedHeaders([]string{
"content-type", "origin", "referer",
}))(router)
srv := &http.Server{
Addr: ":4000",
Handler: cors,
// prevent very slow connection attacks
ReadTimeout: 5 * time.Second,
// do not set a writetimeout as 2FA logins can take minutes
}
err = srv.ListenAndServe()
// replace with below to use HTTPS
// err = srv.ListenAndServeTLS(conf.Cert, conf.Key)
if err != nil {
log.Fatal("ListenAndServe: ", err)
}
}
var errUserNotFound = errors.New("That user isn't present in our database")
var errChallengeSig = errors.New("Challenge signature could not be verified")
var errChallengeUsed = errors.New("You have already used a challenge more recent than that")
var errTimeWindow error
func validateHashes(hashes ...string) error {
// hashes are all 32 bytes
var badHashes []string
for _, hash := range hashes {
if len(hash) != 64 {
badHashes = append(badHashes, hash)
}
}
if len(badHashes) > 0 {
return fmt.Errorf("Hashes are of wrong length: %s", strings.Join(badHashes, ", "))
}
return nil
}
func login(response http.ResponseWriter, request *http.Request) {
response.Header().Add("Strict-Transport-Security", "max-age=63072000; includeSubDomains")
var r map[string]string
if request.Body == nil {
http.Error(response, "Please send a request body", 400)
return
}
err := json.NewDecoder(request.Body).Decode(&r)
if err != nil {
http.Error(response, "Request body could not be decoded into valid json with string keys and values", 403)
return
}
loginKey, ok0 := r["loginKey"]
signedChallenge, ok1 := r["signedChallenge"]
if !(ok0 && ok1) {
http.Error(response, "You must pass (in JSON) a loginKey, signedChallenge", 403)
return
}
if err = validateHashes(loginKey); err != nil {
http.Error(response, err.Error(), 401)
return
}
signedChallengeBytes, err := hex.DecodeString(signedChallenge)
if err != nil {
http.Error(response, fmt.Sprintf("Malformed challenge signature; not hex: %s", signedChallenge), 401)
return
}
if err = validateChallenge(signedChallengeBytes); err != nil {
if err == errTimeWindow {
ret := map[string]string{
"error": "Challenge outside of server time range",
"serverTime": strconv.FormatInt(time.Now().UnixNano(), 10),
}
response.Header().Set("Content-Type", "application/json")
response.Header().Set("X-Content-Type-Options", "nosniff")
response.WriteHeader(401) // error 401
err = json.NewEncoder(response).Encode(ret)
if err != nil {
log.Error(errors.Trace(err), loginKey)
}
return
}
http.Error(response, err.Error(), 401)
return
}
verified, err := verifyChallenge(loginKey, signedChallengeBytes)
if err != nil {
http.Error(response, err.Error(), 401)
return
}
if !verified {
http.Error(response, "Unknown auth error", 401)
return
}
var user loginData
err = usersDB.Get(loginKey, &user, nil)
if err != nil {
if couch.NotFound(err) {
http.Error(response, errUserNotFound.Error(), 401)
return
}
log.Error(errors.Trace(err), loginKey)
http.Error(response, "Unknown error getting user", 401)
return
}
fa, err := is2FA(user)
if err != nil {
http.Error(response, err.Error(), 401)
return
}
if fa {
email, ok0 := r["email"]
secretHash, ok1 := r["secretHash"]
if !(ok0 && ok1) {
response.WriteHeader(http.StatusUnauthorized)
ret := map[string]string{
"error": "You must provide an email and secretHash in JSON, as 2FA is enabled",
"signedTwoFA": user.SignedTwoFA,
}
response.Header().Set("Content-Type", "application/json")
response.Header().Set("X-Content-Type-Options", "nosniff")
err = json.NewEncoder(response).Encode(ret)
if err != nil {
log.Error(errors.Trace(err), loginKey)
}
return
}
login2FA(loginKey, email, secretHash, response)
return
}
returnMnemonic(loginKey, response)
return
}
func returnMnemonic(loginKey string, response http.ResponseWriter) {
encryptedMnemonic, mNonce, err := getUserMnemonic(loginKey)
if err != nil {
http.Error(response, err.Error(), 401)
return
}
ret := mnemonicReturn{}
ret.EncryptedMnemonic = encryptedMnemonic
ret.MNonce = mNonce
response.Header().Set("Content-Type", "application/json")
response.Header().Set("X-Content-Type-Options", "nosniff")
err = json.NewEncoder(response).Encode(ret)
if err != nil {
log.Error(errors.Trace(err), loginKey)
return
}
}
func getUserMnemonic(loginKey string) (string, string, error) {
var user loginData
err := usersDB.Get(loginKey, &user, nil)
if err != nil {
if couch.NotFound(err) {
return "", "", errUserNotFound
}
log.Error(errors.Trace(err), loginKey)
return "", "", errors.New("Unknown error getting user mnemonic")
}
return user.EncryptedMnemonic, user.MNonce, nil
}
// Produce a deterministic revision number from the plaintext, 1-2^16, and a hash
// After compaction, the number of revisions for a doc is now masked on the server
// Input should be the document
func randomRev(doc interface{}) string {
encoded, err := json.Marshal(doc)
if err != nil {
log.Error(errors.Trace(err))
return ""
}
multihash, err := mh.Sum(append([]byte("revsalt"), encoded...), mh.SHA1, 16)
if err != nil {
log.Error(errors.Trace(err))
return ""
}
revNum := binary.BigEndian.Uint16(multihash[15:17]) // two bytes ie 0-2^16
return strconv.Itoa(int(revNum)) + "-" + multihash.HexString()[4:]
}
func validateTwoFA(signedTwoFA, publicSKey string) error {
twoFABytes, err := hex.DecodeString(signedTwoFA)
if err != nil {
log.Error(errors.Trace(err), signedTwoFA)
return errors.New("Problem decoding hex of signedTwoFA")
}
if len(twoFABytes) != 65 {
return errors.New("signedTwoFA is of wrong length")
}
pubBytes, err := hex.DecodeString(publicSKey)
if err != nil {
log.Error(errors.Trace(err), publicSKey)
return errors.New("Problem decoding hex of PublicSKey")
}
var pubByteArray [32]byte
var sigByteArray [64]byte
copy(pubByteArray[:], pubBytes[:])
copy(sigByteArray[:], twoFABytes[:])
if !ed25519.Verify(&pubByteArray, twoFABytes[64:], &sigByteArray) {
return errors.New("TwoFA signature is invalid")
}
if !(twoFABytes[64] == byte(1) || twoFABytes[64] == byte(0)) {
return errors.New("TwoFA signed byte is neither 1 nor 0")
}
return nil
}
func register(response http.ResponseWriter, request *http.Request) {
response.Header().Add("Strict-Transport-Security", "max-age=63072000; includeSubDomains")
var r map[string]string
if request.Body == nil {
http.Error(response, "Please send a request body", 400)
return
}
err := json.NewDecoder(request.Body).Decode(&r)
if err != nil {
http.Error(response, "Request body could not be decoded into valid json with string keys and values", 403)
return
}
loginKey, ok0 := r["loginKey"]
mnemonicHash, ok1 := r["mnemonicHash"]
publicSKey, ok2 := r["secretPublicSigningKey"]
encryptedMnemonic, ok3 := r["encryptedMnemonic"]
mNonce, ok4 := r["mNonce"]
signedTwoFA, ok5 := r["signedTwoFA"]
if !(ok0 && ok1 && ok2 && ok3 && ok4 && ok5) {
http.Error(response, "You must pass (in JSON) a loginKey, mnemonicHash, secretPublicSigningKey, encryptedMnemonic, mNonce, signedTwoFA variable", 403)
return
}
if err = validateHashes(loginKey, mnemonicHash, publicSKey); err != nil {
http.Error(response, err.Error(), 401)
return
}
if err = validateTwoFA(signedTwoFA, publicSKey); err != nil {
http.Error(response, err.Error(), 401)
return
}
// encrypted mnemonic is always 32 bytes
if len(encryptedMnemonic) != 64 {
http.Error(response, "Encrypted mnemonic is not the valid size", 403)
return
}
_, _, err = getUserMnemonic(loginKey)
if err == nil {
http.Error(response, "User already exists in users database", 409)
return
}
user := loginData{}
user.ID = loginKey
user.SignedTwoFA = signedTwoFA
user.LastChallenge = 0
user.PublicSKey = publicSKey
user.EncryptedMnemonic = encryptedMnemonic
user.MNonce = mNonce
userRev := randomRev(user)
user.Rev = userRev
_, err = usersDB.Put(user.ID, user, userRev)
if err != nil {
if couch.Conflict(err) {
http.Error(response, "Error putting document - already exists in users database", 409)
return
}
log.Error(errors.Trace(err), loginKey)
http.Error(response, "Unknown error adding to users database", 401)
return
}
response.Header().Set("Content-Type", "application/json")
response.Header().Set("X-Content-Type-Options", "nosniff")
ret := map[string]bool{"Success": true}
err = json.NewEncoder(response).Encode(ret)
if err != nil {
log.Error(errors.Trace(err), loginKey)
return
}
}