mirror of
https://github.com/mjl-/mox.git
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e7478ed6ac
to get the security benefits (detecting mitm attempts), explicitly configure clients to use a scram plus variant, e.g. scram-sha-256-plus. unfortunately, not many clients support it yet. imapserver scram plus support seems to work with the latest imtest (imap test client) from cyrus-sasl. no success yet with mutt (with gsasl) though.
300 lines
11 KiB
Go
300 lines
11 KiB
Go
package scram
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import (
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"crypto/ed25519"
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cryptorand "crypto/rand"
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"crypto/sha1"
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"crypto/sha256"
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"crypto/tls"
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"crypto/x509"
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"encoding/base64"
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"errors"
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"hash"
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"math/big"
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"net"
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"testing"
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"time"
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)
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func base64Decode(s string) []byte {
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buf, err := base64.StdEncoding.DecodeString(s)
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if err != nil {
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panic("bad base64")
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}
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return buf
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}
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func tcheck(t *testing.T, err error, msg string) {
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t.Helper()
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if err != nil {
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t.Fatalf("%s: %s", msg, err)
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}
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}
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func TestSCRAMSHA1Server(t *testing.T) {
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// Test vector from ../rfc/5802:496
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salt := base64Decode("QSXCR+Q6sek8bf92")
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saltedPassword := SaltPassword(sha1.New, "pencil", salt, 4096)
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server, err := NewServer(sha1.New, []byte("n,,n=user,r=fyko+d2lbbFgONRv9qkxdawL"), nil, false)
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server.serverNonceOverride = "3rfcNHYJY1ZVvWVs7j"
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tcheck(t, err, "newserver")
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resp, err := server.ServerFirst(4096, salt)
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tcheck(t, err, "server first")
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if resp != "r=fyko+d2lbbFgONRv9qkxdawL3rfcNHYJY1ZVvWVs7j,s=QSXCR+Q6sek8bf92,i=4096" {
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t.Fatalf("bad server first")
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}
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serverFinal, err := server.Finish([]byte("c=biws,r=fyko+d2lbbFgONRv9qkxdawL3rfcNHYJY1ZVvWVs7j,p=v0X8v3Bz2T0CJGbJQyF0X+HI4Ts="), saltedPassword)
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tcheck(t, err, "finish")
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if serverFinal != "v=rmF9pqV8S7suAoZWja4dJRkFsKQ=" {
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t.Fatalf("bad server final")
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}
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}
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func TestSCRAMSHA256Server(t *testing.T) {
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// Test vector from ../rfc/7677:122
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salt := base64Decode("W22ZaJ0SNY7soEsUEjb6gQ==")
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saltedPassword := SaltPassword(sha256.New, "pencil", salt, 4096)
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server, err := NewServer(sha256.New, []byte("n,,n=user,r=rOprNGfwEbeRWgbNEkqO"), nil, false)
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server.serverNonceOverride = "%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0"
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tcheck(t, err, "newserver")
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resp, err := server.ServerFirst(4096, salt)
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tcheck(t, err, "server first")
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if resp != "r=rOprNGfwEbeRWgbNEkqO%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0,s=W22ZaJ0SNY7soEsUEjb6gQ==,i=4096" {
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t.Fatalf("bad server first")
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}
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serverFinal, err := server.Finish([]byte("c=biws,r=rOprNGfwEbeRWgbNEkqO%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0,p=dHzbZapWIk4jUhN+Ute9ytag9zjfMHgsqmmiz7AndVQ="), saltedPassword)
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tcheck(t, err, "finish")
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if serverFinal != "v=6rriTRBi23WpRR/wtup+mMhUZUn/dB5nLTJRsjl95G4=" {
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t.Fatalf("bad server final")
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}
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}
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// Bad attempt with wrong password.
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func TestScramServerBadPassword(t *testing.T) {
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salt := base64Decode("W22ZaJ0SNY7soEsUEjb6gQ==")
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saltedPassword := SaltPassword(sha256.New, "marker", salt, 4096)
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server, err := NewServer(sha256.New, []byte("n,,n=user,r=rOprNGfwEbeRWgbNEkqO"), nil, false)
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server.serverNonceOverride = "%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0"
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tcheck(t, err, "newserver")
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_, err = server.ServerFirst(4096, salt)
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tcheck(t, err, "server first")
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_, err = server.Finish([]byte("c=biws,r=rOprNGfwEbeRWgbNEkqO%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0,p=dHzbZapWIk4jUhN+Ute9ytag9zjfMHgsqmmiz7AndVQ="), saltedPassword)
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if !errors.Is(err, ErrInvalidProof) {
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t.Fatalf("got %v, expected ErrInvalidProof", err)
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}
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}
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// Bad attempt with different number of rounds.
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func TestScramServerBadIterations(t *testing.T) {
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salt := base64Decode("W22ZaJ0SNY7soEsUEjb6gQ==")
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saltedPassword := SaltPassword(sha256.New, "pencil", salt, 2048)
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server, err := NewServer(sha256.New, []byte("n,,n=user,r=rOprNGfwEbeRWgbNEkqO"), nil, false)
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server.serverNonceOverride = "%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0"
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tcheck(t, err, "newserver")
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_, err = server.ServerFirst(4096, salt)
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tcheck(t, err, "server first")
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_, err = server.Finish([]byte("c=biws,r=rOprNGfwEbeRWgbNEkqO%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0,p=dHzbZapWIk4jUhN+Ute9ytag9zjfMHgsqmmiz7AndVQ="), saltedPassword)
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if !errors.Is(err, ErrInvalidProof) {
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t.Fatalf("got %v, expected ErrInvalidProof", err)
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}
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}
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// Another attempt but with a randomly different nonce.
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func TestScramServerBad(t *testing.T) {
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salt := base64Decode("W22ZaJ0SNY7soEsUEjb6gQ==")
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saltedPassword := SaltPassword(sha256.New, "pencil", salt, 4096)
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server, err := NewServer(sha256.New, []byte("n,,n=user,r=rOprNGfwEbeRWgbNEkqO"), nil, false)
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tcheck(t, err, "newserver")
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_, err = server.ServerFirst(4096, salt)
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tcheck(t, err, "server first")
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_, err = server.Finish([]byte("c=biws,r="+server.nonce+",p=dHzbZapWIk4jUhN+Ute9ytag9zjfMHgsqmmiz7AndVQ="), saltedPassword)
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if !errors.Is(err, ErrInvalidProof) {
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t.Fatalf("got %v, expected ErrInvalidProof", err)
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}
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}
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func TestScramClient(t *testing.T) {
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c := NewClient(sha256.New, "user", "", false, nil)
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c.clientNonce = "rOprNGfwEbeRWgbNEkqO"
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clientFirst, err := c.ClientFirst()
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tcheck(t, err, "ClientFirst")
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if clientFirst != "n,,n=user,r=rOprNGfwEbeRWgbNEkqO" {
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t.Fatalf("bad clientFirst")
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}
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clientFinal, err := c.ServerFirst([]byte("r=rOprNGfwEbeRWgbNEkqO%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0,s=W22ZaJ0SNY7soEsUEjb6gQ==,i=4096"), "pencil")
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tcheck(t, err, "ServerFirst")
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if clientFinal != "c=biws,r=rOprNGfwEbeRWgbNEkqO%hvYDpWUa2RaTCAfuxFIlj)hNlF$k0,p=dHzbZapWIk4jUhN+Ute9ytag9zjfMHgsqmmiz7AndVQ=" {
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t.Fatalf("bad clientFinal")
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}
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err = c.ServerFinal([]byte("v=6rriTRBi23WpRR/wtup+mMhUZUn/dB5nLTJRsjl95G4="))
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tcheck(t, err, "ServerFinal")
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}
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func TestScram(t *testing.T) {
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runHash := func(h func() hash.Hash, expErr error, username, authzid, password string, iterations int, clientNonce, serverNonce string, noServerPlus bool, clientcs, servercs *tls.ConnectionState) {
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t.Helper()
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defer func() {
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x := recover()
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if x == nil || x == "" {
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return
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}
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panic(x)
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}()
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// check err is either nil or the expected error. if the expected error, panic to abort the authentication session.
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xerr := func(err error, msg string) {
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t.Helper()
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if err != nil && !errors.Is(err, expErr) {
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t.Fatalf("%s: got %v, expected %v", msg, err, expErr)
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}
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if err != nil {
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panic("") // Abort test.
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}
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}
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salt := MakeRandom()
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saltedPassword := SaltPassword(h, password, salt, iterations)
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client := NewClient(h, username, "", noServerPlus, clientcs)
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client.clientNonce = clientNonce
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clientFirst, err := client.ClientFirst()
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xerr(err, "client.ClientFirst")
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server, err := NewServer(h, []byte(clientFirst), servercs, servercs != nil)
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xerr(err, "NewServer")
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server.serverNonceOverride = serverNonce
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serverFirst, err := server.ServerFirst(iterations, salt)
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xerr(err, "server.ServerFirst")
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clientFinal, err := client.ServerFirst([]byte(serverFirst), password)
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xerr(err, "client.ServerFirst")
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serverFinal, err := server.Finish([]byte(clientFinal), saltedPassword)
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xerr(err, "server.Finish")
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err = client.ServerFinal([]byte(serverFinal))
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xerr(err, "client.ServerFinal")
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if expErr != nil {
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t.Fatalf("got no error, expected %v", expErr)
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}
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}
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makeState := func(maxTLSVersion uint16) (tls.ConnectionState, tls.ConnectionState) {
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client, server := net.Pipe()
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defer client.Close()
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defer server.Close()
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tlsClient := tls.Client(client, &tls.Config{
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InsecureSkipVerify: true,
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MaxVersion: maxTLSVersion,
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})
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tlsServer := tls.Server(server, &tls.Config{
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Certificates: []tls.Certificate{fakeCert(t, "mox.example", false)},
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MaxVersion: maxTLSVersion,
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})
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errc := make(chan error, 1)
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go func() {
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errc <- tlsServer.Handshake()
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}()
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err := tlsClient.Handshake()
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tcheck(t, err, "tls handshake")
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err = <-errc
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tcheck(t, err, "server tls handshake")
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clientcs := tlsClient.ConnectionState()
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servercs := tlsServer.ConnectionState()
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return clientcs, servercs
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}
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runPlus := func(maxTLSVersion uint16, expErr error, username, authzid, password string, iterations int, clientNonce, serverNonce string) {
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t.Helper()
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// PLUS variants.
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clientcs, servercs := makeState(maxTLSVersion)
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runHash(sha1.New, expErr, username, authzid, password, iterations, clientNonce, serverNonce, false, &clientcs, &servercs)
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runHash(sha256.New, expErr, username, authzid, password, iterations, clientNonce, serverNonce, false, &clientcs, &servercs)
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}
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run := func(expErr error, username, authzid, password string, iterations int, clientNonce, serverNonce string) {
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t.Helper()
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// Bare variants
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runHash(sha1.New, expErr, username, authzid, password, iterations, clientNonce, serverNonce, false, nil, nil)
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runHash(sha256.New, expErr, username, authzid, password, iterations, clientNonce, serverNonce, false, nil, nil)
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// Check with both TLS 1.2 for "tls-unique", and latest TLS for "tls-exporter".
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runPlus(tls.VersionTLS12, expErr, username, authzid, password, iterations, clientNonce, serverNonce)
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runPlus(0, expErr, username, authzid, password, iterations, clientNonce, serverNonce)
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}
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run(nil, "user", "", "pencil", 4096, "", "")
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run(nil, "mjl@mox.example", "", "testtest", 4096, "", "")
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run(nil, "mjl@mox.example", "", "short", 4096, "", "")
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run(nil, "mjl@mox.example", "", "short", 2048, "", "")
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run(nil, "mjl@mox.example", "mjl@mox.example", "testtest", 4096, "", "")
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run(nil, "mjl@mox.example", "other@mox.example", "testtest", 4096, "", "")
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run(nil, "mjl@mox.example", "other@mox.example", "testtest", 4096, "", "")
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run(ErrUnsafe, "user", "", "pencil", 1, "", "") // Few iterations.
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run(ErrUnsafe, "user", "", "pencil", 2048, "short", "") // Short client nonce.
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run(ErrUnsafe, "user", "", "pencil", 2048, "test1234", "test") // Server added too few random data.
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// Test mechanism downgrade attacks are detected.
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runHash(sha1.New, ErrServerDoesSupportChannelBinding, "user", "", "pencil", 4096, "", "", true, nil, nil)
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runHash(sha256.New, ErrServerDoesSupportChannelBinding, "user", "", "pencil", 4096, "", "", true, nil, nil)
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// Test channel binding, detecting MitM attacks.
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runChannelBind := func(maxTLSVersion uint16) {
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t.Helper()
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clientcs0, _ := makeState(maxTLSVersion)
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_, servercs1 := makeState(maxTLSVersion)
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runHash(sha1.New, ErrChannelBindingsDontMatch, "user", "", "pencil", 4096, "", "", false, &clientcs0, &servercs1)
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runHash(sha256.New, ErrChannelBindingsDontMatch, "user", "", "pencil", 4096, "", "", false, &clientcs0, &servercs1)
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// Client thinks it is on a TLS connection and server is not.
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runHash(sha1.New, ErrChannelBindingsDontMatch, "user", "", "pencil", 4096, "", "", false, &clientcs0, nil)
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runHash(sha256.New, ErrChannelBindingsDontMatch, "user", "", "pencil", 4096, "", "", false, &clientcs0, nil)
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}
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runChannelBind(0)
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runChannelBind(tls.VersionTLS12)
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}
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// Just a cert that appears valid.
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func fakeCert(t *testing.T, name string, expired bool) tls.Certificate {
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notAfter := time.Now()
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if expired {
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notAfter = notAfter.Add(-time.Hour)
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} else {
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notAfter = notAfter.Add(time.Hour)
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}
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privKey := ed25519.NewKeyFromSeed(make([]byte, ed25519.SeedSize)) // Fake key, don't use this for real!
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template := &x509.Certificate{
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SerialNumber: big.NewInt(1), // Required field...
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DNSNames: []string{name},
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NotBefore: time.Now().Add(-time.Hour),
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NotAfter: notAfter,
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}
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localCertBuf, err := x509.CreateCertificate(cryptorand.Reader, template, template, privKey.Public(), privKey)
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if err != nil {
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t.Fatalf("making certificate: %s", err)
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}
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cert, err := x509.ParseCertificate(localCertBuf)
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if err != nil {
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t.Fatalf("parsing generated certificate: %s", err)
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}
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c := tls.Certificate{
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Certificate: [][]byte{localCertBuf},
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PrivateKey: privKey,
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Leaf: cert,
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}
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return c
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}
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