mirror of
https://github.com/shankar0123/certctl.git
synced 2026-06-07 18:01:37 +00:00
21aeed4f4e
Phase 0 closure (Path B2, post-rewrite):
addlicense sweep — adds the canonical certctl LLC copyright + BUSL-1.1
SPDX header to every production Go file. Template:
// Copyright 2026 certctl LLC. All rights reserved.
// SPDX-License-Identifier: BUSL-1.1
Coverage: 338 / 338 production Go files (cmd/ + internal/, excluding
*_test.go and **/testdata/**). Pre-sweep coverage was 22 / 338 (6.5%);
post-sweep is 338 / 338 (100%).
Normalized 22 pre-existing legacy headers (`// Copyright (c) certctl`
+ `// SPDX-License-Identifier: BSL-1.1`) and 1 file using a
`Certctl Contributors` attribution. The legacy SPDX ID `BSL-1.1`
is non-standard; the official SPDX identifier for Business Source
License 1.1 is `BUSL-1.1` (capital U). All 338 files now share the
canonical form.
Generated via:
addlicense -c "certctl LLC" -y 2026 \
-f cowork/legal/copyright-header.tpl \
-ignore '**/testdata/**' -ignore '**/*_test.go' \
cmd/ internal/
Verification:
find cmd internal -name '*.go' -not -name '*_test.go' \
-not -path '*/testdata/*' \
-exec grep -L '^// Copyright 2026 certctl LLC' {} \; | wc -l
Returns: 0
gofmt clean. Header additions are comments only, no compile impact.
Closes: cowork/certctl-architecture-diligence-audit.html#fix-RED-4
262 lines
9.8 KiB
Go
262 lines
9.8 KiB
Go
// Copyright 2026 certctl LLC. All rights reserved.
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// SPDX-License-Identifier: BUSL-1.1
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package service
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import (
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"context"
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"database/sql"
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"errors"
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"fmt"
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"log/slog"
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"math/big"
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"time"
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"github.com/certctl-io/certctl/internal/domain"
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"github.com/certctl-io/certctl/internal/repository"
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)
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// CAOperationsSvc provides CA operations: CRL generation and OCSP response signing.
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// This service handles revocation status queries and certificate lifecycle operations
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// related to the certificate authority.
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type CAOperationsSvc struct {
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revocationRepo repository.RevocationRepository
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certRepo repository.CertificateRepository
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profileRepo repository.CertificateProfileRepository
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issuerRegistry *IssuerRegistry
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// ocspCacheSvc — production hardening II Phase 2 read-through
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// cache. When set, GetOCSPResponseWithNonce serves nil-nonce
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// requests from the cache; nonce-bearing requests always go
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// through the live signing path (the cached blob is signed with
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// nil nonce, so a request that wants a nonce echo can't use it).
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// Use SetOCSPCacheSvc to wire.
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ocspCacheSvc OCSPResponseCacher
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}
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// OCSPResponseCacher is the minimum surface CAOperationsSvc consumes
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// from the OCSP response cache. The cache service implements this
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// interface; the indirection lets tests inject a fake cacher and
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// avoids a service→service hard dep on the cache type.
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type OCSPResponseCacher interface {
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Get(ctx context.Context, issuerID, serialHex string) ([]byte, error)
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InvalidateOnRevoke(ctx context.Context, issuerID, serialHex string) error
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}
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// SetOCSPCacheSvc wires the OCSP response cache. When set, nil-nonce
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// requests through GetOCSPResponseWithNonce serve from the cache;
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// nonce-bearing requests bypass.
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func (s *CAOperationsSvc) SetOCSPCacheSvc(c OCSPResponseCacher) {
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s.ocspCacheSvc = c
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}
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// NewCAOperationsSvc creates a new CA operations service.
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func NewCAOperationsSvc(
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revocationRepo repository.RevocationRepository,
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certRepo repository.CertificateRepository,
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profileRepo repository.CertificateProfileRepository,
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) *CAOperationsSvc {
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return &CAOperationsSvc{
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revocationRepo: revocationRepo,
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certRepo: certRepo,
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profileRepo: profileRepo,
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}
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}
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// SetIssuerRegistry sets the issuer registry for CRL and OCSP operations.
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func (s *CAOperationsSvc) SetIssuerRegistry(registry *IssuerRegistry) {
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s.issuerRegistry = registry
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}
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// GenerateDERCRL generates a DER-encoded X.509 CRL for the given issuer.
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// Short-lived certificates (profile TTL < 1 hour) are excluded from the CRL.
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func (s *CAOperationsSvc) GenerateDERCRL(ctx context.Context, issuerID string) ([]byte, error) {
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if s.revocationRepo == nil {
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return nil, fmt.Errorf("revocation repository not configured")
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}
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if s.issuerRegistry == nil {
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return nil, fmt.Errorf("issuer registry not configured")
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}
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issuerConn, ok := s.issuerRegistry.Get(issuerID)
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if !ok {
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return nil, fmt.Errorf("issuer not found: %s", issuerID)
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}
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// Scope the query to this issuer so the migration 000012 composite index
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// drives a prefix scan; previously this path read every revocation in the
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// table and filtered in Go, which did not scale as the revocation table
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// grew across many issuers (F-001).
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revocations, err := s.revocationRepo.ListByIssuer(ctx, issuerID)
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if err != nil {
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return nil, fmt.Errorf("failed to list revocations for issuer %s: %w", issuerID, err)
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}
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// Convert revocations to CRL entries. Short-lived certificates (profile
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// TTL < 1 hour) are excluded — expiry is sufficient revocation.
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var entries []CRLEntry
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for _, rev := range revocations {
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// Check short-lived exemption: look up the cert's profile
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if s.profileRepo != nil && s.certRepo != nil {
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cert, err := s.certRepo.Get(ctx, rev.CertificateID)
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if err == nil && cert.CertificateProfileID != "" {
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profile, err := s.profileRepo.Get(ctx, cert.CertificateProfileID)
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if err == nil && profile.IsShortLived() {
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slog.Debug("skipping short-lived cert from CRL",
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"certificate_id", rev.CertificateID,
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"profile_id", cert.CertificateProfileID)
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continue
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}
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}
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}
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// Parse serial number from hex string
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serial := new(big.Int)
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serial.SetString(rev.SerialNumber, 16)
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entries = append(entries, CRLEntry{
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SerialNumber: serial,
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RevokedAt: rev.RevokedAt,
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ReasonCode: domain.CRLReasonCode(domain.RevocationReason(rev.Reason)),
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})
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}
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return issuerConn.GenerateCRL(ctx, entries)
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}
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// GetOCSPResponse generates a signed OCSP response for the given certificate serial.
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// Back-compat wrapper around GetOCSPResponseWithNonce: passes nil nonce,
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// which produces a response without the RFC 6960 §4.4.1 nonce extension.
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// Older callers that don't carry a nonce see no behavior change.
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func (s *CAOperationsSvc) GetOCSPResponse(ctx context.Context, issuerID string, serialHex string) ([]byte, error) {
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return s.GetOCSPResponseWithNonce(ctx, issuerID, serialHex, nil)
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}
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// GetOCSPResponseWithNonce returns a signed OCSP response for the
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// given certificate serial. When nonce is non-nil, the responder
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// echoes it in the response per RFC 6960 §4.4.1; nil nonce omits the
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// extension (back-compat).
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//
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// Dispatch: nil-nonce requests served from the OCSP response cache
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// when wired (production hardening II Phase 2); nonce-bearing
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// requests always live-sign because the cache stores nil-nonce blobs
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// and re-signing to add the nonce defeats the point of caching.
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//
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// Production hardening II Phase 1 (nonce) + Phase 2 (cache dispatch).
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func (s *CAOperationsSvc) GetOCSPResponseWithNonce(ctx context.Context, issuerID string, serialHex string, nonce []byte) ([]byte, error) {
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if s.ocspCacheSvc != nil && len(nonce) == 0 {
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// Cache wired and request has no nonce → read-through cache.
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// On cache miss the cache service calls back into
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// LiveSignOCSPResponse(nil) and writes the result back.
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return s.ocspCacheSvc.Get(ctx, issuerID, serialHex)
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}
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return s.LiveSignOCSPResponse(ctx, issuerID, serialHex, nonce)
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}
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// LiveSignOCSPResponse is the unconditional signing path: it consults
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// the revocation repo, decides good/revoked/unknown, and signs via
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// the issuer connector. Bypasses the OCSP response cache.
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//
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// Used by:
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// - GetOCSPResponseWithNonce when nonce != nil OR cache not wired.
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// - OCSPResponseCacheService.Get on cache miss (the read-through
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// fallback that produces the blob to write back to cache).
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//
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// Exported because the cache service needs to call it without
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// re-entering the cache; ordinary handler callers should still go
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// through GetOCSPResponseWithNonce.
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//
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// Production hardening II Phase 2.
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func (s *CAOperationsSvc) LiveSignOCSPResponse(ctx context.Context, issuerID string, serialHex string, nonce []byte) ([]byte, error) {
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if s.revocationRepo == nil {
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return nil, fmt.Errorf("revocation repository not configured")
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}
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if s.issuerRegistry == nil {
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return nil, fmt.Errorf("issuer registry not configured")
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}
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issuerConn, ok := s.issuerRegistry.Get(issuerID)
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if !ok {
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return nil, fmt.Errorf("issuer not found: %s", issuerID)
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}
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serial := new(big.Int)
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serial.SetString(serialHex, 16)
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now := time.Now()
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// Short-lived cert exemption: if the cert's profile has TTL < 1 hour,
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// always return "good" — expiry is sufficient revocation for short-lived certs.
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if s.profileRepo != nil && s.certRepo != nil {
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// Look up cert by (issuer_id, serial) — per RFC 5280 §5.2.3, serial numbers
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// are unique only within a single issuer. The OCSP URL path carries issuer_id,
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// so we scope the lookup to avoid cross-issuer collisions.
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rev, _ := s.revocationRepo.GetByIssuerAndSerial(ctx, issuerID, serialHex)
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if rev != nil {
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cert, err := s.certRepo.Get(ctx, rev.CertificateID)
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if err == nil && cert.CertificateProfileID != "" {
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profile, err := s.profileRepo.Get(ctx, cert.CertificateProfileID)
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if err == nil && profile.IsShortLived() {
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return issuerConn.SignOCSPResponse(ctx, OCSPSignRequest{
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CertSerial: serial,
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CertStatus: 0, // good — short-lived exemption
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ThisUpdate: now,
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NextUpdate: now.Add(1 * time.Hour),
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Nonce: nonce,
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})
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}
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}
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}
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}
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// Check if this (issuer_id, serial) is revoked — RFC 5280 §5.2.3 scoping.
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rev, err := s.revocationRepo.GetByIssuerAndSerial(ctx, issuerID, serialHex)
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if err == nil && rev != nil {
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// Revoked
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return issuerConn.SignOCSPResponse(ctx, OCSPSignRequest{
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CertSerial: serial,
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CertStatus: 1, // revoked
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RevokedAt: rev.RevokedAt,
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RevocationReason: domain.CRLReasonCode(domain.RevocationReason(rev.Reason)),
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ThisUpdate: now,
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NextUpdate: now.Add(1 * time.Hour),
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Nonce: nonce,
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})
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}
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// Not revoked. Per RFC 6960 §2.2, we must only return "good" for a
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// certificate that was actually issued by this CA. Verify the
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// (issuer_id, serial) tuple maps to a real certificate in inventory
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// before asserting "good"; otherwise return "unknown". This closes the
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// coverage gap where forged/guessed serials would be accepted as valid
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// because they had no revocation row (M-004).
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if s.certRepo != nil {
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cert, certErr := s.certRepo.GetByIssuerAndSerial(ctx, issuerID, serialHex)
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if certErr != nil || cert == nil {
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if certErr != nil && !errors.Is(certErr, sql.ErrNoRows) {
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// Real repository failure — log but still fail closed with "unknown"
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// rather than leaking a bogus "good" assertion.
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slog.Warn("OCSP cert lookup failed; returning unknown",
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"issuer_id", issuerID,
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"serial", serialHex,
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"error", certErr)
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}
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return issuerConn.SignOCSPResponse(ctx, OCSPSignRequest{
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CertSerial: serial,
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CertStatus: 2, // unknown
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ThisUpdate: now,
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NextUpdate: now.Add(1 * time.Hour),
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Nonce: nonce,
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})
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}
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}
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// Known cert, not revoked — return "good"
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return issuerConn.SignOCSPResponse(ctx, OCSPSignRequest{
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CertSerial: serial,
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CertStatus: 0, // good
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ThisUpdate: now,
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NextUpdate: now.Add(1 * time.Hour),
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Nonce: nonce,
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})
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}
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