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// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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2025-06-19 07:58:19 -07:00
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// Package tlstest contains code to help test Tailscale's TLS support without
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// depending on real WebPKI roots or certificates during tests.
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package tlstest
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import (
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"bytes"
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"crypto/ecdsa"
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"crypto/elliptic"
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"crypto/rand"
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"crypto/tls"
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"crypto/x509"
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"crypto/x509/pkix"
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_ "embed"
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"encoding/pem"
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"fmt"
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"math/big"
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"sync"
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"time"
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)
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// TestRootCA returns a self-signed ECDSA root CA certificate (as PEM) for
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// testing purposes.
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//
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// Typical use in a test is like:
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//
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// bakedroots.ResetForTest(t, tlstest.TestRootCA())
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func TestRootCA() []byte {
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return bytes.Clone(testRootCAOncer())
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}
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// cache for [privateKey], so it always returns the same key for a given domain.
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var (
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mu sync.Mutex
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privateKeys = make(map[string][]byte) // domain -> private key PEM
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)
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// caDomain is a fake domain name to repreesnt the private key for the root CA.
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const caDomain = "_root"
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// privateKey returns a PEM-encoded test ECDSA private key for the given domain.
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func privateKey(domain string) (pemBytes []byte) {
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mu.Lock()
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defer mu.Unlock()
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if pemBytes, ok := privateKeys[domain]; ok {
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return bytes.Clone(pemBytes)
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}
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defer func() { privateKeys[domain] = bytes.Clone(pemBytes) }()
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k, err := ecdsa.GenerateKey(elliptic.P256(), rand.Reader)
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if err != nil {
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panic(fmt.Sprintf("failed to generate ECDSA key for %q: %v", domain, err))
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}
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der, err := x509.MarshalECPrivateKey(k)
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if err != nil {
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panic(fmt.Sprintf("failed to marshal ECDSA key for %q: %v", domain, err))
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}
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var buf bytes.Buffer
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if err := pem.Encode(&buf, &pem.Block{Type: "EC PRIVATE KEY", Bytes: der}); err != nil {
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panic(fmt.Sprintf("failed to encode PEM: %v", err))
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}
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return buf.Bytes()
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}
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var testRootCAOncer = sync.OnceValue(func() []byte {
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key := rootCAKey()
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now := time.Now().Add(-time.Hour)
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tpl := &x509.Certificate{
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SerialNumber: big.NewInt(1),
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Subject: pkix.Name{
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CommonName: "Tailscale Unit Test ECDSA Root",
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Organization: []string{"Tailscale Test Org"},
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},
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NotBefore: now,
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NotAfter: now.AddDate(5, 0, 0),
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IsCA: true,
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BasicConstraintsValid: true,
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KeyUsage: x509.KeyUsageCertSign | x509.KeyUsageCRLSign,
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SubjectKeyId: mustSKID(&key.PublicKey),
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}
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der, err := x509.CreateCertificate(rand.Reader, tpl, tpl, &key.PublicKey, key)
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if err != nil {
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panic(err)
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}
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return pemCert(der)
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})
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func pemCert(der []byte) []byte {
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var buf bytes.Buffer
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if err := pem.Encode(&buf, &pem.Block{Type: "CERTIFICATE", Bytes: der}); err != nil {
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panic(fmt.Sprintf("failed to encode PEM: %v", err))
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}
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return buf.Bytes()
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}
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var rootCAKey = sync.OnceValue(func() *ecdsa.PrivateKey {
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return mustParsePEM(privateKey(caDomain), x509.ParseECPrivateKey)
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})
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func mustParsePEM[T any](pemBytes []byte, parse func([]byte) (T, error)) T {
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block, rest := pem.Decode(pemBytes)
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if block == nil || len(rest) > 0 {
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panic("invalid PEM")
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}
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v, err := parse(block.Bytes)
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if err != nil {
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panic(fmt.Sprintf("invalid PEM: %v", err))
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}
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return v
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}
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// Domain is a fake domain name used in TLS tests.
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//
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// They don't have real DNS records. Tests are expected to fake DNS
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// lookups and dials for these domains.
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type Domain string
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// ProxyServer is a domain name for a hypothetical proxy server.
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const (
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ProxyServer = Domain("proxy.tstest")
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// ControlPlane is a domain name for a test control plane server.
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ControlPlane = Domain("controlplane.tstest")
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// Derper is a domain name for a test DERP server.
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Derper = Domain("derp.tstest")
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)
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// ServerTLSConfig returns a TLS configuration suitable for a server
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// using the KeyPair's certificate and private key.
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func (d Domain) ServerTLSConfig() *tls.Config {
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cert, err := tls.X509KeyPair(d.CertPEM(), privateKey(string(d)))
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if err != nil {
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panic("invalid TLS key pair: " + err.Error())
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}
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return &tls.Config{
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Certificates: []tls.Certificate{cert},
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}
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}
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// KeyPEM returns a PEM-encoded private key for the domain.
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func (d Domain) KeyPEM() []byte {
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return privateKey(string(d))
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}
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// CertPEM returns a PEM-encoded certificate for the domain.
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func (d Domain) CertPEM() []byte {
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caCert := mustParsePEM(TestRootCA(), x509.ParseCertificate)
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caPriv := mustParsePEM(privateKey(caDomain), x509.ParseECPrivateKey)
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leafKey := mustParsePEM(d.KeyPEM(), x509.ParseECPrivateKey)
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serial, err := rand.Int(rand.Reader, big.NewInt(0).Lsh(big.NewInt(1), 128))
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if err != nil {
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panic(err)
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}
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now := time.Now().Add(-time.Hour)
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tpl := &x509.Certificate{
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SerialNumber: serial,
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Subject: pkix.Name{CommonName: string(d)},
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NotBefore: now,
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NotAfter: now.AddDate(2, 0, 0),
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KeyUsage: x509.KeyUsageDigitalSignature | x509.KeyUsageKeyEncipherment,
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ExtKeyUsage: []x509.ExtKeyUsage{x509.ExtKeyUsageServerAuth},
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BasicConstraintsValid: true,
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DNSNames: []string{string(d)},
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}
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der, err := x509.CreateCertificate(rand.Reader, tpl, caCert, &leafKey.PublicKey, caPriv)
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if err != nil {
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panic(err)
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}
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return pemCert(der)
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}
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func mustSKID(pub *ecdsa.PublicKey) []byte {
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skid, err := x509.MarshalPKIXPublicKey(pub)
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if err != nil {
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panic(err)
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}
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return skid[:20] // same as x509 library
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}
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