Files
Tobias GesellchenandClaude Sonnet 4.6 bf3466d5d9 sec8: validate zeroconf port to break CodeQL taint chain (alerts 134/135/136)
Add validateZcPort alongside validateZcHost: the strconv.Atoi→Itoa
round-trip produces a sanitised integer string that CodeQL no longer
considers tainted, closing the remaining go/request-forgery findings
at zeroconf.go:263, :336, :413.

Also rejects clearly invalid inputs (non-numeric, out-of-range) that
would previously have produced a silently broken URL.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-05-25 21:17:57 +02:00

560 lines
16 KiB
Go

package zeroconf
import (
"encoding/base64"
"encoding/json"
"errors"
"fmt"
"net"
"net/http"
"net/http/httptest"
"testing"
)
// srvHostPort returns the host and port of a test server's listener.
func srvHostPort(srv *httptest.Server) (host, port string) {
host, port, _ = net.SplitHostPort(srv.Listener.Addr().String())
return
}
func TestGenerateDHKeyPair(t *testing.T) {
priv1, pub1, err := GenerateDHKeyPair()
if err != nil {
t.Fatalf("GenerateDHKeyPair: %v", err)
}
if priv1 == nil || len(pub1) == 0 {
t.Fatal("expected non-nil private key and non-empty public key")
}
if len(pub1) != dhKeySize {
t.Errorf("public key length = %d, want %d", len(pub1), dhKeySize)
}
// Two calls must produce different key pairs.
_, pub2, err := GenerateDHKeyPair()
if err != nil {
t.Fatalf("GenerateDHKeyPair second call: %v", err)
}
if string(pub1) == string(pub2) {
t.Error("two key-pair generations produced identical public keys")
}
}
func TestDHCommutativity(t *testing.T) {
// DH shared secret must be symmetric: A's secret == B's secret.
privA, pubA, err := GenerateDHKeyPair()
if err != nil {
t.Fatal(err)
}
privB, pubB, err := GenerateDHKeyPair()
if err != nil {
t.Fatal(err)
}
secretA := ComputeSharedSecret(privA, pubB)
secretB := ComputeSharedSecret(privB, pubA)
if string(secretA) != string(secretB) {
t.Error("DH shared secrets are not equal (commutativity broken)")
}
}
func TestDeriveKeys(t *testing.T) {
sharedSecret := make([]byte, dhKeySize)
for i := range sharedSecret {
sharedSecret[i] = byte(i)
}
encKey, macKey := DeriveKeys(sharedSecret)
if len(encKey) != 16 {
t.Errorf("encKey length = %d, want 16", len(encKey))
}
if len(macKey) != 20 {
t.Errorf("macKey length = %d, want 20", len(macKey))
}
// Deterministic: same input → same output.
encKey2, macKey2 := DeriveKeys(sharedSecret)
if string(encKey) != string(encKey2) || string(macKey) != string(macKey2) {
t.Error("DeriveKeys is not deterministic")
}
// Different secrets → different keys.
other := make([]byte, dhKeySize)
encKeyOther, _ := DeriveKeys(other)
if string(encKey) == string(encKeyOther) {
t.Error("different secrets produced the same encKey")
}
}
func TestBuildCredentialsBlob(t *testing.T) {
blob := BuildCredentialsBlob("alice", "tok123", AuthTypeOAuthToken)
creds, err := parseCredentialsBlob(blob)
if err != nil {
t.Fatalf("parseCredentialsBlob: %v", err)
}
if creds.username != "alice" {
t.Errorf("username = %q, want %q", creds.username, "alice")
}
if string(creds.authData) != "tok123" {
t.Errorf("authData = %q, want %q", string(creds.authData), "tok123")
}
if uint64(creds.authType) != AuthTypeOAuthToken {
t.Errorf("authType = %d, want %d (AuthTypeOAuthToken)", creds.authType, AuthTypeOAuthToken)
}
}
func TestEncryptDecryptBlob(t *testing.T) {
sharedSecret := make([]byte, dhKeySize)
for i := range sharedSecret {
sharedSecret[i] = byte(42 + i)
}
encKey, macKey := DeriveKeys(sharedSecret)
plaintext := []byte("hello zeroconf world")
encrypted, err := EncryptBlob(encKey, macKey, plaintext)
if err != nil {
t.Fatalf("EncryptBlob: %v", err)
}
decrypted, err := DecryptBlob(encKey, macKey, encrypted)
if err != nil {
t.Fatalf("DecryptBlob: %v", err)
}
if string(decrypted) != string(plaintext) {
t.Errorf("round-trip mismatch: got %q, want %q", decrypted, plaintext)
}
// Tampered checksum must fail.
tampered := make([]byte, len(encrypted))
copy(tampered, encrypted)
tampered[len(tampered)-1] ^= 0xff
if _, err := DecryptBlob(encKey, macKey, tampered); err == nil {
t.Error("expected error on tampered checksum, got nil")
}
}
func TestPushCredentials_FullRoundTrip(t *testing.T) {
speakerPrivate, speakerPublicBytes, err := GenerateDHKeyPair()
if err != nil {
t.Fatalf("speaker keygen: %v", err)
}
type received struct {
username string
authData string
authType int
}
var got received
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Query().Get("action") {
case "getInfo":
w.Header().Set("Content-Type", "application/json")
_ = json.NewEncoder(w).Encode(map[string]interface{}{
"status": 101,
"statusString": "OK",
"publicKey": base64.StdEncoding.EncodeToString(speakerPublicBytes),
})
case "addUser":
if err := r.ParseForm(); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
blobBytes, err := base64.StdEncoding.DecodeString(r.FormValue("blob"))
if err != nil {
http.Error(w, "bad blob base64: "+err.Error(), http.StatusBadRequest)
return
}
clientKeyBytes, err := base64.StdEncoding.DecodeString(r.FormValue("clientKey"))
if err != nil {
http.Error(w, "bad clientKey base64: "+err.Error(), http.StatusBadRequest)
return
}
shared := ComputeSharedSecret(speakerPrivate, clientKeyBytes)
encKey, macKey := DeriveKeys(shared)
plaintext, err := DecryptBlob(encKey, macKey, blobBytes)
if err != nil {
http.Error(w, "decrypt failed: "+err.Error(), http.StatusBadRequest)
return
}
creds, err := parseCredentialsBlob(plaintext)
if err != nil {
http.Error(w, "parse failed: "+err.Error(), http.StatusBadRequest)
return
}
got.username = creds.username
got.authData = string(creds.authData)
got.authType = creds.authType
w.WriteHeader(http.StatusOK)
default:
http.NotFound(w, r)
}
}))
defer srv.Close()
const wantUsername = "user@example.com"
const wantToken = "eyJhbGciOiJSUzI1NiJ9.access-token"
host, port := srvHostPort(srv)
if err := PushCredentials(host, port, wantUsername, wantToken); err != nil {
t.Fatalf("PushCredentials: %v", err)
}
if got.username != wantUsername {
t.Errorf("username = %q, want %q", got.username, wantUsername)
}
if got.authData != wantToken {
t.Errorf("authData = %q, want %q", got.authData, wantToken)
}
if uint64(got.authType) != AuthTypeOAuthToken {
t.Errorf("authType = %d, want %d (AuthTypeOAuthToken)", got.authType, AuthTypeOAuthToken)
}
}
func TestPushCredentials_FallbackOnGetInfoFailure(t *testing.T) {
var receivedForm map[string]string
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Query().Get("action") {
case "getInfo":
http.Error(w, "not supported", http.StatusNotFound)
case "addUser":
if err := r.ParseForm(); err != nil {
http.Error(w, err.Error(), http.StatusBadRequest)
return
}
receivedForm = map[string]string{
"userName": r.FormValue("userName"),
"blob": r.FormValue("blob"),
"clientKey": r.FormValue("clientKey"),
"tokenType": r.FormValue("tokenType"),
}
w.WriteHeader(http.StatusOK)
default:
http.NotFound(w, r)
}
}))
defer srv.Close()
const wantUsername = "user@example.com"
const wantToken = "raw-access-token"
host, port := srvHostPort(srv)
if err := PushCredentials(host, port, wantUsername, wantToken); err != nil {
t.Fatalf("PushCredentials: %v", err)
}
if receivedForm == nil {
t.Fatal("addUser was never called")
}
if receivedForm["userName"] != wantUsername {
t.Errorf("userName = %q, want %q", receivedForm["userName"], wantUsername)
}
if receivedForm["blob"] != wantToken {
t.Errorf("blob = %q, want raw token %q", receivedForm["blob"], wantToken)
}
if receivedForm["tokenType"] != "accesstoken" {
t.Errorf("tokenType = %q, want %q", receivedForm["tokenType"], "accesstoken")
}
if receivedForm["clientKey"] != "" {
t.Errorf("clientKey = %q, want empty for simplified fallback", receivedForm["clientKey"])
}
}
// parseCredentialsBlob is the inverse of BuildCredentialsBlob, used in tests.
func parseCredentialsBlob(data []byte) (*parsedCredentials, error) {
var r parsedCredentials
i := 0
for i < len(data) {
tag := data[i]
i++
fieldNum := tag >> 3
wireType := tag & 0x07
switch wireType {
case 0: // varint
val, n := readProtoVarint(data[i:])
i += n
if fieldNum == 5 {
r.authType = int(val)
}
case 2: // length-delimited
length, n := readProtoVarint(data[i:])
i += n
value := data[i : i+int(length)]
i += int(length)
switch fieldNum {
case 1:
r.username = string(value)
case 4:
r.authData = value
}
default:
return nil, fmt.Errorf("unsupported wire type %d at offset %d", wireType, i-1)
}
}
return &r, nil
}
type parsedCredentials struct {
username string
authType int
authData []byte
}
func readProtoVarint(data []byte) (uint64, int) {
var val uint64
for i, b := range data {
val |= uint64(b&0x7f) << (7 * uint(i))
if b&0x80 == 0 {
return val, i + 1
}
}
return 0, len(data)
}
func TestValidateZcHost(t *testing.T) {
// These cases use RFC-1918 192.168/16 addresses — validateZcHost accepts
// loopback, RFC-1918, and link-local only. RFC-5737 doc IPs (192.0.2/24 etc.)
// would be rejected, so tests use real private-range values.
cases := []struct {
name string
input string
wantOK bool
}{
{"loopback", "127.0.0.1", true},
{"private 192", "192.168.10.10", true},
{"private 10", "10.0.0.5", true},
{"private 172", "172.16.0.1", true},
{"link-local v4", "169.254.10.20", true},
// IPv6 hosts are passed without brackets (brackets are URL syntax).
{"ipv6 loopback", "::1", true},
{"ipv6 link-local", "fe80::1", true},
{"public IP rejected", "1.1.1.1", false},
{"public ipv6 rejected", "2001:db8::1", false},
{"hostname rejected", "myspeaker.local", false},
{"plain hostname rejected", "speaker", false},
{"empty host rejected", "", false},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
ip, err := validateZcHost(tc.input)
if tc.wantOK {
if err != nil {
t.Fatalf("validateZcHost(%q) returned error %v, want success", tc.input, err)
}
if ip == nil {
t.Fatalf("validateZcHost(%q) returned nil IP, want non-nil", tc.input)
}
} else if err == nil {
t.Errorf("validateZcHost(%q) succeeded, want error", tc.input)
}
})
}
}
func TestValidateZcPort(t *testing.T) {
cases := []struct {
input string
wantOut string
wantErr bool
}{
{"8200", "8200", false},
{"1", "1", false},
{"65535", "65535", false},
{"", "", false}, // empty → scheme default, not an error
{"0", "", true}, // below range
{"-1", "", true}, // negative
{"65536", "", true}, // above range
{"foo", "", true}, // non-numeric
{"8200x", "", true}, // trailing garbage
}
for _, tc := range cases {
t.Run(tc.input, func(t *testing.T) {
got, err := validateZcPort(tc.input)
if tc.wantErr {
if err == nil {
t.Errorf("validateZcPort(%q) succeeded with %q, want error", tc.input, got)
}
return
}
if err != nil {
t.Fatalf("validateZcPort(%q) returned error %v, want success", tc.input, err)
}
if got != tc.wantOut {
t.Errorf("validateZcPort(%q) = %q, want %q", tc.input, got, tc.wantOut)
}
})
}
}
func TestBuildZcBase(t *testing.T) {
cases := []struct {
name string
host string
port string
wantURL string
wantErr bool
}{
{"with port", "127.0.0.1", "8200", "http://127.0.0.1:8200/zc", false},
{"without port", "192.168.1.1", "", "http://192.168.1.1/zc", false},
{"ipv6 with port", "::1", "8200", "http://[::1]:8200/zc", false},
{"ipv6 without port", "::1", "", "http://[::1]/zc", false},
{"invalid port", "127.0.0.1", "foo", "", true},
{"port out of range", "127.0.0.1", "99999", "", true},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
ip := net.ParseIP(tc.host)
if ip == nil {
t.Fatalf("test setup: net.ParseIP(%q) returned nil", tc.host)
}
got, err := buildZcBase(ip, tc.port)
if tc.wantErr {
if err == nil {
t.Errorf("buildZcBase(%q, %q) succeeded, want error", tc.host, tc.port)
}
return
}
if err != nil {
t.Fatalf("buildZcBase(%q, %q) returned error %v, want success", tc.host, tc.port, err)
}
if got.String() != tc.wantURL {
t.Errorf("buildZcBase(%q, %q) = %q, want %q", tc.host, tc.port, got.String(), tc.wantURL)
}
if got.Path != "/zc" {
t.Errorf("Path = %q, want /zc", got.Path)
}
if got.RawQuery != "" {
t.Errorf("RawQuery = %q, want empty", got.RawQuery)
}
})
}
}
// TestPushCredentials_AddUserNoOp covers the firmware quirk we observed in
// production: ?action=addUser sometimes returns 404 with an empty body when
// the speaker already has the requested user as its active one. That is NOT a
// failure — the speaker silently kept its state. PushCredentials must signal
// this via ErrAddUserNoOp so the watchdog can demote it from "Failed to prime"
// to a benign success.
func TestPushCredentials_AddUserNoOp(t *testing.T) {
_, speakerPublicBytes, err := GenerateDHKeyPair()
if err != nil {
t.Fatalf("speaker keygen: %v", err)
}
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Query().Get("action") {
case "getInfo":
w.Header().Set("Content-Type", "application/json")
_ = json.NewEncoder(w).Encode(map[string]interface{}{
"status": 101,
"publicKey": base64.StdEncoding.EncodeToString(speakerPublicBytes),
})
case "addUser":
// Firmware no-op: 404 + empty body, no Server / Content-Type header.
w.WriteHeader(http.StatusNotFound)
default:
http.NotFound(w, r)
}
}))
defer srv.Close()
host, port := srvHostPort(srv)
err = PushCredentials(host, port, "gesellix", "fresh-access-token")
if !errors.Is(err, ErrAddUserNoOp) {
t.Fatalf("PushCredentials: got %v, want ErrAddUserNoOp", err)
}
}
// TestPushCredentials_AddUserNoOpInSimplifiedPath asserts the same narrow
// pattern is recognised on the simplified-token fallback (firmware that
// 404s getInfo entirely).
func TestPushCredentials_AddUserNoOpInSimplifiedPath(t *testing.T) {
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Query().Get("action") {
case "getInfo":
http.Error(w, "not supported", http.StatusNotFound)
case "addUser":
w.WriteHeader(http.StatusNotFound) // empty body
default:
http.NotFound(w, r)
}
}))
defer srv.Close()
host, port := srvHostPort(srv)
err := PushCredentials(host, port, "gesellix", "raw-access-token")
if !errors.Is(err, ErrAddUserNoOp) {
t.Fatalf("PushCredentials (simplified path): got %v, want ErrAddUserNoOp", err)
}
}
// TestPushCredentials_AddUserRealError_NotMisclassified guards the narrowness
// of isAddUserNoOp: a 404 *with* a body (or any non-404 error) must still
// surface as a regular error, not the benign sentinel. Otherwise we'd silently
// swallow genuine credential rejections that happen to come back as 4xx.
func TestPushCredentials_AddUserRealError_NotMisclassified(t *testing.T) {
_, speakerPublicBytes, err := GenerateDHKeyPair()
if err != nil {
t.Fatalf("speaker keygen: %v", err)
}
cases := []struct {
name string
status int
body string
}{
{"404 with body should NOT be no-op", http.StatusNotFound, "spotifyError=12 invalid_token"},
{"400 empty body should NOT be no-op", http.StatusBadRequest, ""},
{"500 empty body should NOT be no-op", http.StatusInternalServerError, ""},
}
for _, tc := range cases {
t.Run(tc.name, func(t *testing.T) {
srv := httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
switch r.URL.Query().Get("action") {
case "getInfo":
w.Header().Set("Content-Type", "application/json")
_ = json.NewEncoder(w).Encode(map[string]interface{}{
"status": 101,
"publicKey": base64.StdEncoding.EncodeToString(speakerPublicBytes),
})
case "addUser":
w.WriteHeader(tc.status)
if tc.body != "" {
_, _ = w.Write([]byte(tc.body))
}
default:
http.NotFound(w, r)
}
}))
defer srv.Close()
host, port := srvHostPort(srv)
err := PushCredentials(host, port, "gesellix", "fresh-access-token")
if err == nil {
t.Fatalf("expected error, got nil")
}
if errors.Is(err, ErrAddUserNoOp) {
t.Errorf("got ErrAddUserNoOp, want a real failure for status=%d body=%q", tc.status, tc.body)
}
})
}
}