Files
selfpost/internal/domain/service.go
T
mix c6eeb30258 Phase 4: applications + SASL (sasldb2) + sender_login_maps
Adds application accounts bound to domains: a SASL login/password in
sasldb2, a per-application address mode (wildcard @domain or an explicit
list), and matching smtpd_sender_login_maps bindings — with create,
list, edit-mode, delete and password regeneration (spec 4.1, 5.1,
7.2.5-9). Generated passwords are shown exactly once and never stored in
plaintext (7.6.1).

- internal/store/applications.go: transactional CRUD; globally unique
  login; ListBindings (address->login) as the map source; logins-by-
  domain for pre-cascade SASL cleanup.
- internal/app: saslpasswd2 wrapper (password via stdin, login as a
  whitelisted argv element, no shell — 7.6.3); strong base64url password;
  address validation that enforces domain ownership before any config
  write (7.6.2); service orchestrating store + sasldb2 + map with full
  rollback on partial failure.
- internal/postfix: sender_login_maps regenerated as a pure function of
  the registry (many-to-one logins merged per address), atomic write,
  injection backstop (7.6.4).
- Postfix reload, corrected: `postfix start-fg` forks a separate master,
  so signalling the supervised process never reaches it. Reload now runs
  the canonical `postfix reload` via a one-shot supervisord program the
  unprivileged panel triggers over the group control socket. Verified in
  mail.log.
- domain.Service.Delete purges the domain's SASL accounts, then cascades,
  then rebuilds the sender map and reloads; manual reload now covers both
  OpenDKIM and Postfix.
- web: application management in the domain page, one-time credential
  shown inline; postfix joins the selfpost group and entrypoint normalises
  /data/sasl and /data/postfix (setgid, group-readable) with self-heal.

Verified on the dev server: gofmt/vet/test green, image builds, and a
container e2e covers the full application lifecycle, domain-delete
cascade, restart persistence, and a real postfix reload.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-12 21:18:10 +03:00

144 lines
5.4 KiB
Go

package domain
import (
"fmt"
"codeberg.org/mix/selfpost/internal/store"
)
// Applications is the slice of the application service the domain service needs
// to keep the SASL database and sender map consistent when a domain (and its
// applications, via cascade) is deleted. *app.Service satisfies it; it is an
// interface here to avoid a package import cycle and to keep domain deletion
// testable in isolation.
type Applications interface {
// PurgeDomainSASL removes the SASL accounts of the domain's applications.
// It must run before the registry cascade so the logins are still known.
PurgeDomainSASL(domainID int64) error
// Resync rebuilds smtpd_sender_login_maps from the remaining applications
// and reloads Postfix.
Resync() error
}
// Service coordinates the places a sending domain lives: the SQLite registry,
// the on-disk DKIM keys and OpenDKIM's tables, plus — on deletion — the SASL
// database and Postfix sender map its applications touch. Callers (the web
// handlers) validate user input first; Service keeps the stores in agreement and
// drives the OpenDKIM/Postfix reloads (spec 6, 7.2.2-4, 7.2.10).
type Service struct {
store *store.Store
odk *OpenDKIM
apps Applications
selector string
}
// NewService builds the domain service. selectorDefault is the DKIM selector
// assigned to new domains (spec 8: DKIM_SELECTOR_DEFAULT); it is
// operator-configured, not user input. apps is used only on deletion, to clear
// the SASL accounts and sender-map bindings of the domain's applications.
func NewService(st *store.Store, odk *OpenDKIM, apps Applications, selectorDefault string) *Service {
return &Service{store: st, odk: odk, apps: apps, selector: selectorDefault}
}
// List returns all domains with application counts (spec 7.2.2).
func (s *Service) List() ([]store.Domain, error) {
return s.store.ListDomains()
}
// Get returns one domain by id (store.ErrDomainNotFound if absent).
func (s *Service) Get(id int64) (store.Domain, error) {
return s.store.GetDomain(id)
}
// Add registers a new sending domain: it records the row, ensures a DKIM key
// exists on disk, and regenerates + reloads the OpenDKIM tables (spec 7.2.3).
// name must already be normalised and validated by the caller. A duplicate
// returns store.ErrDomainExists.
//
// The registry row is written first so its UNIQUE constraint is the single
// arbiter of "already exists" (avoiding a check-then-act race). An existing
// on-disk key is reused rather than overwritten, so re-adding a domain whose DB
// row was lost keeps its published DNS record valid. If key generation or the
// OpenDKIM rebuild fails, the row is rolled back so we never leave a registered
// domain that OpenDKIM cannot sign.
func (s *Service) Add(name string) (store.Domain, error) {
d, err := s.store.AddDomain(name, s.selector)
if err != nil {
return store.Domain{}, err
}
if _, err := s.odk.EnsureKey(d.Name, d.DKIMSelector); err != nil {
s.rollbackAdd(d.ID)
return store.Domain{}, err
}
if err := s.resync(); err != nil {
s.rollbackAdd(d.ID)
return store.Domain{}, err
}
return d, nil
}
// rollbackAdd best-effort removes a half-created domain after a downstream
// failure. Errors here are logged by the caller's returned error path; the key
// (if freshly generated) is left in place harmlessly and reused on retry.
func (s *Service) rollbackAdd(id int64) {
_ = s.store.DeleteDomain(id)
}
// Delete removes a domain and everything bound to it (spec 7.2.4, 6.5). The
// order matters: the applications' SASL accounts are cleared first, while their
// logins are still in the registry; then the registry rows (applications and
// their addresses) go via the DB cascade; then the OpenDKIM tables and the
// Postfix sender map are rebuilt from what remains — so OpenDKIM stops signing
// and Postfix stops authorising the domain's senders — before the DKIM key is
// deleted.
func (s *Service) Delete(id int64) error {
d, err := s.store.GetDomain(id)
if err != nil {
return err
}
if err := s.apps.PurgeDomainSASL(id); err != nil {
return fmt.Errorf("clear SASL accounts for %s: %w", d.Name, err)
}
if err := s.store.DeleteDomain(id); err != nil {
return err
}
if err := s.resync(); err != nil {
return err
}
if err := s.apps.Resync(); err != nil {
return fmt.Errorf("rebuild sender map after deleting %s: %w", d.Name, err)
}
if err := s.odk.RemoveKey(d.Name); err != nil {
// The domain is gone from the registry and tables; a leftover key
// directory is harmless. Surface it so it is not silently ignored.
return fmt.Errorf("domain deleted but key cleanup failed: %w", err)
}
return nil
}
// DKIMRecord returns the DNS TXT record to publish for a domain (spec 7.2.10).
func (s *Service) DKIMRecord(d store.Domain) (DKIMRecord, error) {
return s.odk.Record(d.Name, d.DKIMSelector)
}
// Resync regenerates the OpenDKIM tables from the registry and reloads OpenDKIM.
// It backs the manual reload button (spec 7.2.12) and doubles as a recovery path
// if the tables ever drift from the database.
func (s *Service) Resync() error {
return s.resync()
}
// resync rebuilds KeyTable/SigningTable from the current domain set and reloads.
func (s *Service) resync() error {
domains, err := s.store.ListDomains()
if err != nil {
return err
}
signing := make([]SigningDomain, 0, len(domains))
for _, d := range domains {
signing = append(signing, SigningDomain{Name: d.Name, Selector: d.DKIMSelector})
}
return s.odk.Rebuild(signing)
}