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- package nodetoken
- import (
- "encoding/base64"
- "encoding/json"
- "os"
- "path/filepath"
- "strings"
- "testing"
- )
- func testRing(t *testing.T, activeID string, ids ...string) *Keyring {
- t.Helper()
- kr := &Keyring{ActiveID: activeID, Keys: map[string][keyLen]byte{}}
- for _, id := range ids {
- var k [keyLen]byte
- for i := range k {
- k[i] = byte(i) + id[len(id)-1] // deterministic and distinct for k1/k2
- }
- kr.Keys[id] = k
- }
- return kr
- }
- func TestRoundTrip(t *testing.T) {
- c, err := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- if err != nil {
- t.Fatal(err)
- }
- enc, err := c.Encrypt(7, "s3cret-token")
- if err != nil {
- t.Fatal(err)
- }
- if !IsEncrypted(enc) || !strings.HasPrefix(enc, "enc:v1:k1:") {
- t.Fatalf("unexpected ciphertext form: %q", enc)
- }
- pt, err := c.Decrypt(7, enc)
- if err != nil {
- t.Fatal(err)
- }
- if pt != "s3cret-token" {
- t.Fatalf("round-trip mismatch: %q", pt)
- }
- }
- func TestAADBindsToNode(t *testing.T) {
- c, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- enc, _ := c.Encrypt(7, "tok")
- // Decrypting under a different node id must fail (ciphertext bound to row).
- if _, err := c.Decrypt(8, enc); err == nil {
- t.Fatal("expected AAD mismatch error decrypting under wrong node id")
- }
- }
- func TestNonceIsRandom(t *testing.T) {
- c, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- a, _ := c.Encrypt(1, "same")
- b, _ := c.Encrypt(1, "same")
- if a == b {
- t.Fatal("two encryptions of the same value produced identical ciphertext (nonce reuse)")
- }
- }
- func TestPlaintextPassThrough(t *testing.T) {
- // ModeOff: encrypt is a no-op, decrypt returns plaintext.
- c, _ := NewCodec(ModeOff, nil)
- enc, err := c.Encrypt(1, "plain")
- if err != nil || enc != "plain" {
- t.Fatalf("off-mode encrypt should be no-op, got %q err=%v", enc, err)
- }
- // A legacy plaintext row decrypts (passes through) in any mode.
- c2, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- if pt, err := c2.Decrypt(1, "legacy-plain"); err != nil || pt != "legacy-plain" {
- t.Fatalf("legacy plaintext should pass through, got %q err=%v", pt, err)
- }
- }
- func TestEncryptedNeverFallsBackToPlaintext(t *testing.T) {
- c, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- enc, _ := c.Encrypt(1, "tok")
- // Corrupt the ciphertext body — must error, never return raw bytes.
- bad := enc[:len(enc)-2] + "AA"
- if _, err := c.Decrypt(1, bad); err == nil {
- t.Fatal("corrupted ciphertext must fail, not fall back to plaintext")
- }
- // Unknown key id must error.
- c2, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- other := strings.Replace(enc, "enc:v1:k1:", "enc:v1:zz:", 1)
- if _, err := c2.Decrypt(1, other); err == nil {
- t.Fatal("unknown key id must fail")
- }
- }
- func TestEncryptionMarkerPassesThroughWhenDisabled(t *testing.T) {
- c, _ := NewCodec(ModeOff, nil)
- stored := "enc:v1:not-ciphertext"
- if got, err := c.Decrypt(1, stored); err != nil || got != stored {
- t.Fatalf("off-mode changed a legacy token: got %q err=%v", got, err)
- }
- }
- func TestParseKeyringRejectsDelimiterInKeyID(t *testing.T) {
- key := base64.StdEncoding.EncodeToString(make([]byte, keyLen))
- for _, tc := range []struct {
- name, active string
- keys map[string]string
- }{
- {"active delimiter", "region:k1", map[string]string{"region:k1": key}},
- {"key delimiter", "k1", map[string]string{"k1": key, "old:k0": key}},
- {"empty key", "k1", map[string]string{"k1": key, "": key}},
- } {
- t.Run(tc.name, func(t *testing.T) {
- if _, err := parseKeyring(tc.active, tc.keys); err == nil {
- t.Fatal("invalid key id was accepted")
- }
- })
- }
- }
- func TestEncryptRoundTripSafe(t *testing.T) {
- // Re-submitting stored ciphertext (UI round-trip) must not double-encrypt.
- c, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- enc, _ := c.Encrypt(5, "tok")
- again, err := c.Encrypt(5, enc)
- if err != nil {
- t.Fatal(err)
- }
- if again != enc {
- t.Fatal("re-encrypting stored ciphertext changed it (double-encrypt)")
- }
- if pt, _ := c.Decrypt(5, again); pt != "tok" {
- t.Fatalf("round-trip-safe encrypt corrupted token: %q", pt)
- }
- }
- func TestEmptyTokenNeverEncrypted(t *testing.T) {
- c, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1"))
- if v, _ := c.Encrypt(1, ""); v != "" {
- t.Fatalf("empty token must stay empty, got %q", v)
- }
- }
- func TestRotation(t *testing.T) {
- // k2 active, k1 retained. Old-key value still decrypts; new writes use k2.
- ring := testRing(t, "k2", "k1", "k2")
- if ring.Keys["k1"] == ring.Keys["k2"] {
- t.Fatal("rotation fixture keys k1 and k2 are identical")
- }
- c, _ := NewCodec(ModeRequired, ring)
- // produce a k1 value via a codec whose active is k1
- c1, _ := NewCodec(ModeRequired, testRing(t, "k1", "k1", "k2"))
- old, _ := c1.Encrypt(3, "tok")
- if pt, err := c.Decrypt(3, old); err != nil || pt != "tok" {
- t.Fatalf("retained old key must decrypt, got %q err=%v", pt, err)
- }
- if c.EncryptedWithActive(old) {
- t.Fatal("k1 value should not count as encrypted-with-active(k2)")
- }
- neu, _ := c.Encrypt(3, "tok")
- if !c.EncryptedWithActive(neu) {
- t.Fatal("new write should be encrypted with active key")
- }
- }
- func TestNewCodecRequiresKey(t *testing.T) {
- if _, err := NewCodec(ModeRequired, nil); err == nil {
- t.Fatal("required mode without a key must fail (fail-closed)")
- }
- if _, err := NewCodec(ModeMigration, &Keyring{ActiveID: "x", Keys: nil}); err == nil {
- t.Fatal("migration mode with empty keyring must fail")
- }
- }
- func TestParseMode(t *testing.T) {
- for in, want := range map[string]Mode{"": ModeOff, "off": ModeOff, "Migration": ModeMigration, "REQUIRED": ModeRequired} {
- if m, err := ParseMode(in); err != nil || m != want {
- t.Fatalf("ParseMode(%q)=%v err=%v, want %v", in, m, err, want)
- }
- }
- if _, err := ParseMode("bogus"); err == nil {
- t.Fatal("unknown mode must error")
- }
- }
- func TestFileKeySourceRejectsLoosePerms(t *testing.T) {
- dir := t.TempDir()
- p := filepath.Join(dir, "k.json")
- key := make([]byte, keyLen)
- body, _ := json.Marshal(keyFile{Active: "k1", Keys: map[string]string{"k1": base64.StdEncoding.EncodeToString(key)}})
- if err := os.WriteFile(p, body, 0o644); err != nil {
- t.Fatal(err)
- }
- if _, err := (FileKeySource{Path: p}).Load(); err == nil {
- t.Fatal("0644 key file must be rejected")
- }
- if err := os.Chmod(p, 0o600); err != nil {
- t.Fatal(err)
- }
- kr, err := (FileKeySource{Path: p}).Load()
- if err != nil {
- t.Fatalf("0600 key file should load: %v", err)
- }
- if kr.ActiveID != "k1" || len(kr.Keys) != 1 {
- t.Fatalf("unexpected keyring %+v", kr)
- }
- }
- func TestEnvKeySource(t *testing.T) {
- key := make([]byte, keyLen)
- for i := range key {
- key[i] = byte(i)
- }
- t.Setenv("XUI_NODE_TOKEN_KEY_TEST", base64.StdEncoding.EncodeToString(key))
- kr, err := (EnvKeySource{Var: "XUI_NODE_TOKEN_KEY_TEST"}).Load()
- if err != nil {
- t.Fatal(err)
- }
- if kr.ActiveID != "env" {
- t.Fatalf("env key id should be 'env', got %q", kr.ActiveID)
- }
- c, _ := NewCodec(ModeRequired, kr)
- enc, _ := c.Encrypt(1, "x")
- if pt, _ := c.Decrypt(1, enc); pt != "x" {
- t.Fatal("env-sourced key failed round trip")
- }
- }
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