Files
coredns/plugin/tls/acme.go
houyuwushang 546fac83ea plugin/tls: manage certificates with ACME DNS-01 (#8310)
* plugin/tls: add automatic ACME certificates

Signed-off-by: houyuwushang <liuluoqianqiu@outlook.com>

* chore: add houyuwushang to CODEOWNERS

Signed-off-by: houyuwushang <liuluoqianqiu@outlook.com>

* chore: regenerate maintainer owners

Signed-off-by: houyuwushang <liuluoqianqiu@outlook.com>

---------

Signed-off-by: houyuwushang <liuluoqianqiu@outlook.com>
2026-07-29 19:24:22 -07:00

583 lines
15 KiB
Go

package tls
import (
"context"
ctls "crypto/tls"
"crypto/x509"
"errors"
"fmt"
"io/fs"
"net"
"net/url"
"os"
"path/filepath"
"sort"
"strconv"
"strings"
"sync"
"github.com/coredns/caddy"
"github.com/coredns/coredns/core/dnsserver"
"github.com/coredns/coredns/plugin"
"github.com/caddyserver/certmagic"
"github.com/mholt/acmez/v3/acme"
"github.com/miekg/dns"
"go.uber.org/zap"
"go.uber.org/zap/zapcore"
"golang.org/x/net/idna"
)
var (
errACMENotReady = errors.New("ACME certificate is not ready")
errACMENameNotManaged = errors.New("server name is not managed by this ACME configuration")
)
type acmeOptions struct {
domains []string
email string
ca string
storage string
caRoot string
resolver string
}
type acmeConfigKey struct {
domains string
email string
ca string
storage string
caRoot string
resolver string
}
func (o acmeOptions) key() acmeConfigKey {
domains := append([]string(nil), o.domains...)
sort.Strings(domains)
return acmeConfigKey{
domains: strings.Join(domains, "\x00"),
email: o.email,
ca: o.ca,
storage: o.storage,
caRoot: o.caRoot,
resolver: o.resolver,
}
}
func defaultACMEOptions(root string) (acmeOptions, error) {
if root == "" {
root = "."
}
storage, err := filepath.Abs(filepath.Join(root, ".coredns", "acme"))
if err != nil {
return acmeOptions{}, fmt.Errorf("resolving ACME storage directory: %w", err)
}
return acmeOptions{ca: certmagic.DefaultACME.CA, storage: storage}, nil
}
func normalizeACMEDomain(domain string) (string, error) {
domain = strings.ToLower(strings.TrimSuffix(domain, "."))
wildcard := strings.HasPrefix(domain, "*.")
check := strings.TrimPrefix(domain, "*.")
if domain == "" || check == "" || strings.Contains(check, "*") || net.ParseIP(check) != nil {
return "", fmt.Errorf("invalid ACME domain %q", domain)
}
check, err := idna.Lookup.ToASCII(check)
if err != nil {
return "", fmt.Errorf("invalid ACME domain %q: %w", domain, err)
}
if _, ok := dns.IsDomainName(check); !ok {
return "", fmt.Errorf("invalid ACME domain %q", domain)
}
if wildcard {
return "*." + check, nil
}
return check, nil
}
func validateACMEOptions(o *acmeOptions) error {
if len(o.domains) == 0 {
return errors.New("ACME requires at least one domain")
}
seen := make(map[string]struct{}, len(o.domains))
domains := o.domains[:0]
for _, domain := range o.domains {
normalized, err := normalizeACMEDomain(domain)
if err != nil {
return err
}
if _, ok := seen[normalized]; ok {
continue
}
seen[normalized] = struct{}{}
domains = append(domains, normalized)
}
o.domains = domains
u, err := url.Parse(o.ca)
if err != nil || (u.Scheme != "https" && u.Scheme != "http") || u.Host == "" {
return fmt.Errorf("invalid ACME CA URL %q", o.ca)
}
if o.resolver != "" {
host, port, err := net.SplitHostPort(o.resolver)
if err != nil {
return fmt.Errorf("invalid ACME resolver %q: %w", o.resolver, err)
}
if host == "" {
return fmt.Errorf("invalid ACME resolver %q: host is empty", o.resolver)
}
value, err := strconv.Atoi(port)
if err != nil || value < 1 || value > 65535 {
return fmt.Errorf("invalid ACME resolver port %q", port)
}
}
if _, err := loadACMETrustedRoots(o.caRoot); err != nil {
return err
}
return nil
}
type acmeDNS01Solver struct {
mu sync.RWMutex
records map[string]map[string]int
}
func newACMEDNS01Solver() *acmeDNS01Solver {
return &acmeDNS01Solver{records: make(map[string]map[string]int)}
}
func (s *acmeDNS01Solver) Present(ctx context.Context, challenge acme.Challenge) error {
if err := ctx.Err(); err != nil {
return err
}
name := normalizeChallengeName(challenge.DNS01TXTRecordName())
value := challenge.DNS01KeyAuthorization()
s.mu.Lock()
defer s.mu.Unlock()
if s.records[name] == nil {
s.records[name] = make(map[string]int)
}
s.records[name][value]++
return nil
}
func (s *acmeDNS01Solver) CleanUp(_ context.Context, challenge acme.Challenge) error {
name := normalizeChallengeName(challenge.DNS01TXTRecordName())
value := challenge.DNS01KeyAuthorization()
s.mu.Lock()
defer s.mu.Unlock()
values := s.records[name]
if values[value] <= 1 {
delete(values, value)
} else {
values[value]--
}
if len(values) == 0 {
delete(s.records, name)
}
return nil
}
func (s *acmeDNS01Solver) values(name string) []string {
s.mu.RLock()
defer s.mu.RUnlock()
values := s.records[normalizeChallengeName(name)]
answer := make([]string, 0, len(values))
for value := range values {
answer = append(answer, value)
}
sort.Strings(answer)
return answer
}
func normalizeChallengeName(name string) string {
return strings.ToLower(dns.Fqdn(name))
}
type acmeChallengeHandler struct {
Next plugin.Handler
solver *acmeDNS01Solver
}
func (h *acmeChallengeHandler) ServeDNS(ctx context.Context, w dns.ResponseWriter, r *dns.Msg) (int, error) {
if len(r.Question) != 1 || r.Question[0].Qtype != dns.TypeTXT || r.Question[0].Qclass != dns.ClassINET {
return plugin.NextOrFailure(h.Name(), h.Next, ctx, w, r)
}
question := r.Question[0]
values := h.solver.values(question.Name)
if len(values) == 0 {
return plugin.NextOrFailure(h.Name(), h.Next, ctx, w, r)
}
response := new(dns.Msg)
response.SetReply(r)
response.Authoritative = true
for _, value := range values {
response.Answer = append(response.Answer, &dns.TXT{
Hdr: dns.RR_Header{Name: question.Name, Rrtype: dns.TypeTXT, Class: dns.ClassINET},
Txt: []string{value},
})
}
if err := w.WriteMsg(response); err != nil {
return dns.RcodeServerFailure, err
}
return dns.RcodeSuccess, nil
}
func (*acmeChallengeHandler) Name() string { return "tls" }
type certificateManager interface {
LoadManaged(context.Context, []string) error
ManageAsync(context.Context, []string) error
GetCertificate(*ctls.ClientHelloInfo) (*ctls.Certificate, error)
}
type acmeBackend interface {
Manager(acmeConfigKey) certificateManager
Stop()
}
type acmeBackendFactory func([]*acmeEntry, *acmeDNS01Solver) (acmeBackend, error)
type acmeEntry struct {
options acmeOptions
key acmeConfigKey
mu sync.RWMutex
manager certificateManager
}
func (e *acmeEntry) setManager(manager certificateManager) {
e.mu.Lock()
e.manager = manager
e.mu.Unlock()
}
func (e *acmeEntry) getCertificate(hello *ctls.ClientHelloInfo) (*ctls.Certificate, error) {
if hello != nil && hello.ServerName != "" && !e.manages(hello.ServerName) {
return nil, fmt.Errorf("%w: %q", errACMENameNotManaged, hello.ServerName)
}
e.mu.RLock()
manager := e.manager
e.mu.RUnlock()
if manager == nil {
return nil, fmt.Errorf("%w for %q", errACMENotReady, e.options.domains)
}
return manager.GetCertificate(hello)
}
func (e *acmeEntry) manages(serverName string) bool {
serverName, err := normalizeACMEDomain(serverName)
if err != nil {
return false
}
for _, domain := range e.options.domains {
if certmagic.MatchWildcard(serverName, domain) {
return true
}
}
return false
}
func (e *acmeEntry) tlsConfig() *ctls.Config {
return &ctls.Config{
MinVersion: ctls.VersionTLS12,
GetCertificate: e.getCertificate,
}
}
type acmeRuntime struct {
mu sync.Mutex
entries map[acmeConfigKey]*acmeEntry
domainOwners map[string]acmeConfigKey
solver *acmeDNS01Solver
backendFactory acmeBackendFactory
backend acmeBackend
cancel context.CancelFunc
handlersInstalled bool
started bool
stopped bool
}
func newACMERuntime(factory acmeBackendFactory) *acmeRuntime {
return &acmeRuntime{
entries: make(map[acmeConfigKey]*acmeEntry),
domainOwners: make(map[string]acmeConfigKey),
solver: newACMEDNS01Solver(),
backendFactory: factory,
}
}
func (r *acmeRuntime) add(options acmeOptions) (*acmeEntry, error) {
r.mu.Lock()
defer r.mu.Unlock()
if r.started {
return nil, errors.New("cannot add ACME configuration after startup")
}
key := options.key()
if entry := r.entries[key]; entry != nil {
return entry, nil
}
for _, domain := range options.domains {
if owner, ok := r.domainOwners[domain]; ok && owner != key {
return nil, fmt.Errorf("ACME domain %q is configured with conflicting options", domain)
}
}
entry := &acmeEntry{options: options, key: key}
r.entries[key] = entry
for _, domain := range options.domains {
r.domainOwners[domain] = key
}
return entry, nil
}
func (r *acmeRuntime) installChallengeHandlers(c *caddy.Controller) {
r.mu.Lock()
defer r.mu.Unlock()
if r.handlersInstalled {
return
}
r.handlersInstalled = true
dnsserver.AddPluginToAllServerBlocks(c, func(next plugin.Handler) plugin.Handler {
return &acmeChallengeHandler{Next: next, solver: r.solver}
})
}
func (r *acmeRuntime) start() error {
r.mu.Lock()
defer r.mu.Unlock()
if r.started || r.stopped {
return nil
}
entries := make([]*acmeEntry, 0, len(r.entries))
for _, entry := range r.entries {
entries = append(entries, entry)
}
backend, err := r.backendFactory(entries, r.solver)
if err != nil {
return err
}
ctx, cancel := context.WithCancel(context.Background())
for _, entry := range entries {
manager := backend.Manager(entry.key)
if manager == nil {
cancel()
backend.Stop()
for _, configured := range entries {
configured.setManager(nil)
}
return fmt.Errorf("no ACME certificate manager for %q", entry.options.domains)
}
entry.setManager(manager)
if err := manager.LoadManaged(ctx, entry.options.domains); err != nil {
cancel()
backend.Stop()
for _, configured := range entries {
configured.setManager(nil)
}
return fmt.Errorf("loading managed certificates for %q: %w", entry.options.domains, err)
}
}
r.backend = backend
r.cancel = cancel
r.started = true
var errs []error
for _, entry := range entries {
entry.mu.RLock()
manager := entry.manager
entry.mu.RUnlock()
if err := manager.ManageAsync(ctx, entry.options.domains); err != nil {
errs = append(errs, fmt.Errorf("starting ACME management for %q: %w", entry.options.domains, err))
}
}
return errors.Join(errs...)
}
func (r *acmeRuntime) stop() error {
r.mu.Lock()
defer r.mu.Unlock()
if r.stopped {
return nil
}
r.stopped = true
if r.cancel != nil {
r.cancel()
}
if r.backend != nil {
r.backend.Stop()
}
return nil
}
type certmagicBackend struct {
cache *certmagic.Cache
managers map[acmeConfigKey]*certmagicManager
}
type certmagicManager struct{ *certmagic.Config }
func (m *certmagicManager) LoadManaged(ctx context.Context, domains []string) error {
for _, domain := range domains {
if _, err := m.CacheManagedCertificate(ctx, domain); err != nil && !errors.Is(err, fs.ErrNotExist) {
return err
}
}
return nil
}
func newCertmagicBackend(entries []*acmeEntry, solver *acmeDNS01Solver) (acmeBackend, error) {
var configsMu sync.RWMutex
configsByDomain := make(map[string]*certmagic.Config)
logger := newACMELogger()
cache := certmagic.NewCache(certmagic.CacheOptions{
GetConfigForCert: func(cert certmagic.Certificate) (*certmagic.Config, error) {
configsMu.RLock()
defer configsMu.RUnlock()
for _, name := range cert.Names {
if cfg := configsByDomain[strings.ToLower(strings.TrimSuffix(name, "."))]; cfg != nil {
return cfg, nil
}
}
return nil, fmt.Errorf("no ACME configuration for certificate names %q", cert.Names)
},
Logger: logger,
})
backend := &certmagicBackend{cache: cache, managers: make(map[acmeConfigKey]*certmagicManager)}
for _, entry := range entries {
roots, err := loadACMETrustedRoots(entry.options.caRoot)
if err != nil {
cache.Stop()
return nil, err
}
cfg := certmagic.New(cache, certmagic.Config{
DefaultServerName: entry.options.domains[0],
Storage: &certmagic.FileStorage{Path: entry.options.storage},
Logger: logger,
})
issuer := certmagic.NewACMEIssuer(cfg, certmagic.ACMEIssuer{
CA: entry.options.ca,
Email: entry.options.email,
Agreed: true,
DisableHTTPChallenge: true,
DisableTLSALPNChallenge: true,
DisableDistributedSolvers: true,
DNS01Solver: solver,
TrustedRoots: roots,
Resolver: entry.options.resolver,
Logger: logger,
})
cfg.Issuers = []certmagic.Issuer{issuer}
backend.managers[entry.key] = &certmagicManager{Config: cfg}
configsMu.Lock()
for _, domain := range entry.options.domains {
configsByDomain[domain] = cfg
}
configsMu.Unlock()
}
return backend, nil
}
func (b *certmagicBackend) Manager(key acmeConfigKey) certificateManager { return b.managers[key] }
func (b *certmagicBackend) Stop() { b.cache.Stop() }
func loadACMETrustedRoots(path string) (*x509.CertPool, error) {
if path == "" {
return nil, nil
}
pem, err := os.ReadFile(path)
if err != nil {
return nil, fmt.Errorf("reading ACME CA root %q: %w", path, err)
}
roots, err := x509.SystemCertPool()
if err != nil {
roots = x509.NewCertPool()
}
if !roots.AppendCertsFromPEM(pem) {
return nil, fmt.Errorf("ACME CA root %q contains no certificates", path)
}
return roots, nil
}
func newACMELogger() *zap.Logger {
encoder := zapcore.NewConsoleEncoder(zapcore.EncoderConfig{
MessageKey: "message",
NameKey: "logger",
EncodeName: zapcore.FullNameEncoder,
LineEnding: zapcore.DefaultLineEnding,
EncodeLevel: zapcore.LowercaseLevelEncoder,
})
cores := make([]zapcore.Core, 0, 4)
for _, level := range []zapcore.Level{zapcore.DebugLevel, zapcore.InfoLevel, zapcore.WarnLevel, zapcore.ErrorLevel} {
selected := level
cores = append(cores, zapcore.NewCore(
encoder,
zapcore.AddSync(acmeLogWriter{level: selected}),
zap.LevelEnablerFunc(func(candidate zapcore.Level) bool {
if selected == zapcore.ErrorLevel {
return candidate >= selected
}
return candidate == selected
}),
))
}
return zap.New(zapcore.NewTee(cores...))
}
type acmeLogWriter struct{ level zapcore.Level }
func (w acmeLogWriter) Write(message []byte) (int, error) {
text := strings.TrimSpace(string(message))
switch w.level {
case zapcore.DebugLevel:
log.Debug(text)
case zapcore.InfoLevel:
log.Info(text)
case zapcore.WarnLevel:
log.Warning(text)
default:
log.Error(text)
}
return len(message), nil
}
func (acmeLogWriter) Sync() error { return nil }
type acmeRuntimeStorageKey struct{}
func getACMERuntime(c *caddy.Controller) *acmeRuntime {
key := acmeRuntimeStorageKey{}
if value := c.Get(key); value != nil {
return value.(*acmeRuntime)
}
runtime := newACMERuntime(newCertmagicBackend)
c.Set(key, runtime)
c.OnShutdown(runtime.stop)
return runtime
}
func acmeStartupHook(event caddy.EventName, info any) error {
if event != caddy.InstanceStartupEvent {
return nil
}
instance, ok := info.(*caddy.Instance)
if !ok {
return fmt.Errorf("unexpected ACME startup event payload %T", info)
}
instance.StorageMu.RLock()
value := instance.Storage[acmeRuntimeStorageKey{}]
instance.StorageMu.RUnlock()
if value == nil {
return nil
}
return value.(*acmeRuntime).start()
}