Files
probo/pkg/probod/probod.go
Sacha Al Himdani f462b124e6 Batch signature and approval notifications via debounced worker
Replace the immediate per-document approval email and the manual
"send signing notifications" action with a single debounced worker that
batches pending requests per recipient and organization.

The worker (go.gearno.de/kit/worker) polls on an interval (default 5m)
and claims one (organization, recipient) group at a time, sending one
consolidated signing email and/or one approval email per recipient/org
that lists every document awaiting their signature or approval. The
claim is a conditional UPDATE that doubles as concurrency-safe dedup, so
several workers never email the same group twice.

Each request is notified once it has been pending past the debounce
delay (default 15m), then reminded at 1x, 2x and 3x the reminder
interval (default 1 day) after the previous email, after which it stops.
New last_notified_at and notification_count columns on signatures and
approval decisions drive the debounce, the widening reminder cadence and
the four-email cap.

Email copy lists each document with its title, type and a deep link to
the employee page. Removed the inline approval-on-publish email, the
SendSigningNotifications service method/mutation/MCP tool, its IAM action,
and the related console UI and n8n operation.

Signed-off-by: Sacha Al Himdani <sacha@probo.com>
2026-06-18 15:39:04 +02:00

1425 lines
42 KiB
Go

// Copyright (c) 2025-2026 Probo Inc <hello@probo.com>.
//
// Permission to use, copy, modify, and/or distribute this software for any
// purpose with or without fee is hereby granted, provided that the above
// copyright notice and this permission notice appear in all copies.
//
// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
// REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
// AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
// INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
// LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
// OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
// PERFORMANCE OF THIS SOFTWARE.
package probod
import (
"context"
"crypto"
"crypto/rsa"
"crypto/tls"
"crypto/x509"
"encoding/pem"
"errors"
"fmt"
"net"
"net/http"
"strings"
"sync"
"time"
"github.com/aws/aws-sdk-go-v2/service/s3"
proxyproto "github.com/pires/go-proxyproto"
"github.com/prometheus/client_golang/prometheus"
"go.gearno.de/kit/httpclient"
"go.gearno.de/kit/httpserver"
"go.gearno.de/kit/log"
"go.gearno.de/kit/migrator"
"go.gearno.de/kit/pg"
"go.gearno.de/kit/unit"
"go.gearno.de/kit/worker"
"go.gearno.de/x/ref"
"go.opentelemetry.io/otel/trace"
"go.probo.inc/probo/pkg/accessreview"
"go.probo.inc/probo/pkg/agentrun"
"go.probo.inc/probo/pkg/awsconfig"
"go.probo.inc/probo/pkg/baseurl"
"go.probo.inc/probo/pkg/certmanager"
"go.probo.inc/probo/pkg/connector"
"go.probo.inc/probo/pkg/connector/provider"
"go.probo.inc/probo/pkg/cookiebanner"
"go.probo.inc/probo/pkg/coredata"
"go.probo.inc/probo/pkg/crypto/cipher"
"go.probo.inc/probo/pkg/crypto/keys"
"go.probo.inc/probo/pkg/crypto/passwdhash"
pemutil "go.probo.inc/probo/pkg/crypto/pem"
"go.probo.inc/probo/pkg/esign"
"go.probo.inc/probo/pkg/evidencedescriber"
"go.probo.inc/probo/pkg/filemanager"
"go.probo.inc/probo/pkg/geoloc"
"go.probo.inc/probo/pkg/html2pdf"
"go.probo.inc/probo/pkg/iam"
"go.probo.inc/probo/pkg/iam/oauth2server"
"go.probo.inc/probo/pkg/iam/oidc"
"go.probo.inc/probo/pkg/mailer"
"go.probo.inc/probo/pkg/mailman"
"go.probo.inc/probo/pkg/probo"
"go.probo.inc/probo/pkg/riskmanagement"
"go.probo.inc/probo/pkg/securecookie"
"go.probo.inc/probo/pkg/server"
"go.probo.inc/probo/pkg/server/trustedproxy"
"go.probo.inc/probo/pkg/slack"
"go.probo.inc/probo/pkg/thirdparty"
"go.probo.inc/probo/pkg/trust"
"go.probo.inc/probo/pkg/webhook"
"golang.org/x/sync/errgroup"
)
type Implm struct {
cfg Config
}
var (
_ unit.Configurable = (*Implm)(nil)
_ unit.Runnable = (*Implm)(nil)
)
func New() *Implm {
return &Implm{
cfg: Config{
BaseURL: "http://localhost:8080",
Api: APIConfig{
Addr: "localhost:8080",
},
Pg: PgConfig{
Addr: "localhost:5432",
Username: "probod",
Password: "probod",
Database: "probod",
PoolSize: 100,
MinPoolSize: 10,
MaxConnIdleTimeSeconds: 1800,
MaxConnLifetimeSeconds: 3600,
MaxConnLifetimeJitterSeconds: 300,
HealthCheckPeriodSeconds: 60,
},
ChromeDPAddr: "localhost:9222",
Auth: AuthConfig{
Password: PasswordConfig{
Pepper: "this-is-a-secure-pepper-for-password-hashing-at-least-32-bytes",
Iterations: 1000000,
},
Cookie: CookieConfig{
Name: "SSID",
Secret: "this-is-a-secure-secret-for-cookie-signing-at-least-32-bytes",
Duration: 24,
Domain: "localhost",
Secure: true,
},
DisableSignup: false,
InvitationConfirmationTokenValidity: 3600,
PasswordResetTokenValidity: 3600,
MagicLinkTokenValidity: 900,
SAML: SAMLConfig{
SessionDuration: 604800,
CleanupIntervalSeconds: 86400,
DomainVerificationIntervalSeconds: 60,
DomainVerificationResolverAddr: "8.8.8.8:53",
},
},
TrustCenter: TrustCenterConfig{
HTTPAddr: ":80",
HTTPSAddr: ":443",
},
AWS: AWSConfig{
Region: "us-east-1",
Bucket: "probod",
},
Notifications: NotificationsConfig{
Mailer: MailerConfig{
MailerInterval: 60,
SenderEmail: "no-reply@notification.getprobo.com",
SenderName: "Probo",
SMTP: SMTPConfig{
Addr: "localhost:1025",
},
},
Slack: SlackConfig{
SenderInterval: 60,
},
Webhook: WebhookConfig{
SenderInterval: 5,
CacheTTL: 86400,
},
Document: DocumentNotificationConfig{
Interval: 300, // 5 minutes
DebounceDelay: 900, // 15 minutes
ReminderInterval: 86400, // 1 day base cadence (1x, 2x, 3x)
},
},
CustomDomains: CustomDomainsConfig{
RenewalInterval: 3600,
ProvisionInterval: 30,
ResolverAddr: "8.8.8.8:53",
ACME: ACMEConfig{
Directory: "https://acme-v02.api.letsencrypt.org/directory",
Email: "admin@probo.com",
KeyType: "EC256",
},
},
SCIMBridge: SCIMBridgeConfig{
SyncInterval: 60, // 15 minutes
PollInterval: 30, // 30 seconds
},
ESign: ESignConfig{
TSAURL: "http://timestamp.digicert.com",
},
Branding: true,
EvidenceDescriber: EvidenceDescriberConfig{
Interval: 10,
StaleAfter: 300,
MaxConcurrency: 10,
},
ThirdPartyVetting: ThirdPartyVettingWorkerConfig{
Interval: 10,
StaleAfter: 1500,
MaxConcurrency: 1,
},
CommonThirdPartyEnrichmentWorker: CommonThirdPartyEnrichmentWorkerConfig{
Interval: 10,
MaxConcurrency: 1,
StaleAfter: 900,
AgentTimeout: 90,
AgentMaxTurns: 12,
ConfidenceThreshold: 0.7,
MaxAttempts: 3,
},
},
}
}
func (impl *Implm) GetConfiguration() any {
return &impl.cfg
}
func (impl *Implm) Run(
parentCtx context.Context,
l *log.Logger,
r prometheus.Registerer,
tp trace.TracerProvider,
) error {
tracer := tp.Tracer("probod")
ctx, rootSpan := tracer.Start(parentCtx, "probod.Run")
defer rootSpan.End()
// Parse config values that need conversion from strings to complex types
baseURL, err := baseurl.Parse(impl.cfg.BaseURL)
if err != nil {
rootSpan.RecordError(err)
return fmt.Errorf("cannot parse base URL: %w", err)
}
var encryptionKey cipher.EncryptionKey
if err := encryptionKey.UnmarshalText([]byte(impl.cfg.EncryptionKey)); err != nil {
rootSpan.RecordError(err)
return fmt.Errorf("cannot parse encryption key: %w", err)
}
wg := sync.WaitGroup{}
ctx, cancel := context.WithCancelCause(ctx)
defer cancel(context.Canceled)
pgClient, err := pg.NewClient(
impl.cfg.Pg.Options(
pg.WithApplicationName("probod"),
pg.WithLogger(l),
pg.WithRegisterer(r),
pg.WithTracerProvider(tp),
)...,
)
if err != nil {
rootSpan.RecordError(err)
return fmt.Errorf("cannot create pg client: %w", err)
}
pepper, err := impl.cfg.Auth.GetPepperBytes()
if err != nil {
rootSpan.RecordError(err)
return fmt.Errorf("cannot get pepper bytes: %w", err)
}
_, err = impl.cfg.Auth.GetCookieSecretBytes()
if err != nil {
rootSpan.RecordError(err)
return fmt.Errorf("cannot get cookie secret bytes: %w", err)
}
awsConfig, err := awsconfig.NewConfig(
l,
httpclient.DefaultPooledClient(
httpclient.WithLogger(l),
httpclient.WithTracerProvider(tp),
httpclient.WithRegisterer(r),
),
awsconfig.Options{
Region: impl.cfg.AWS.Region,
AccessKeyID: impl.cfg.AWS.AccessKeyID,
SecretAccessKey: impl.cfg.AWS.SecretAccessKey,
Endpoint: impl.cfg.AWS.Endpoint,
},
)
if err != nil {
return fmt.Errorf("cannot initialize AWS config: %w", err)
}
html2pdfConverter := html2pdf.NewConverter(
impl.cfg.ChromeDPAddr,
html2pdf.WithLogger(l),
html2pdf.WithTracerProvider(tp),
)
s3Client := s3.NewFromConfig(awsConfig, func(o *s3.Options) {
o.UsePathStyle = impl.cfg.AWS.UsePathStyle
})
err = migrator.NewMigrator(pgClient, coredata.Migrations, l.Named("migrations")).Run(ctx, "migrations")
if err != nil {
return fmt.Errorf("cannot migrate database schema: %w", err)
}
geolocService := geoloc.NewService(pgClient)
populated, err := geolocService.IsPopulated(ctx)
if err != nil {
l.ErrorCtx(ctx, "cannot check geoloc table", log.Error(err))
} else if !populated {
l.Warn("IP geolocation table is empty; run geoloc-import to populate it")
}
hp, err := passwdhash.NewProfile(pepper, uint32(impl.cfg.Auth.Password.Iterations))
if err != nil {
return fmt.Errorf("cannot create hashing profile: %w", err)
}
redirectURI := baseURL.WithPath(connector.CallbackPath).MustString()
providerRegistry := provider.NewBuiltinRegistry()
defaultConnectorRegistry := connector.NewConnectorRegistry()
for _, connectorCfg := range impl.cfg.Connectors {
if oauth2c, ok := connectorCfg.Config.(*connector.OAuth2Connector); ok {
if err := providerRegistry.ApplyOAuth2Defaults(connectorCfg.Provider, redirectURI, oauth2c); err != nil {
return fmt.Errorf("cannot apply oauth2 defaults: %w", err)
}
}
if err := defaultConnectorRegistry.Register(connectorCfg.Provider, connectorCfg.Config); err != nil {
return fmt.Errorf("cannot register connector: %w", err)
}
}
proboAgentCfg, proboLLMClient, err := impl.resolveAgentClient("probo", impl.cfg.Agents.Probo, l, tp, r)
if err != nil {
return err
}
evidenceDescriberAgentCfg, evidenceDescriberLLMClient, err := impl.resolveAgentClient("evidence-describer", impl.cfg.Agents.EvidenceDescriber, l, tp, r)
if err != nil {
return err
}
thirdPartyVetter, err := impl.buildThirdPartyVetter(l, tp, r)
if err != nil {
return err
}
trackerMappingCfg, trackerEnrichmentCfg, thirdPartyDisambiguationCfg, err := impl.buildTrackerAgents(l, tp, r)
if err != nil {
return err
}
fileManagerService := filemanager.NewService(pgClient, baseURL, s3Client)
commonThirdPartyEnrichmentCfg, err := impl.buildCommonThirdPartyEnrichmentConfig(l, tp, r, fileManagerService)
if err != nil {
return err
}
var (
samlCert *x509.Certificate
samlKey *rsa.PrivateKey
)
if impl.cfg.Auth.SAML.Certificate != "" && impl.cfg.Auth.SAML.PrivateKey != "" {
// Decode certificate
certBlock, _ := pem.Decode([]byte(impl.cfg.Auth.SAML.Certificate))
if certBlock == nil {
return fmt.Errorf("cannot decode SAML certificate PEM block")
}
var err error
samlCert, err = x509.ParseCertificate(certBlock.Bytes)
if err != nil {
return fmt.Errorf("cannot parse SAML certificate: %w", err)
}
// Decode private key
signer, err := pemutil.DecodePrivateKey([]byte(impl.cfg.Auth.SAML.PrivateKey))
if err != nil {
return fmt.Errorf("cannot decode SAML private key: %w", err)
}
var ok bool
samlKey, ok = signer.(*rsa.PrivateKey)
if !ok {
return fmt.Errorf("SAML private key is not an RSA key")
}
}
if len(impl.cfg.Auth.OAuth2Server.SigningKeys) == 0 {
return fmt.Errorf("cannot configure OAuth2 server: at least one signing key is required")
}
var (
oauth2SigningKeys oauth2server.SigningKeys
hasActive bool
activeSigningKeyPEM string
)
for _, keyCfg := range impl.cfg.Auth.OAuth2Server.SigningKeys {
signer, err := pemutil.DecodePrivateKey([]byte(keyCfg.PrivateKey))
if err != nil {
return fmt.Errorf("cannot decode OAuth2 server signing key: %w", err)
}
rsaKey, ok := signer.(*rsa.PrivateKey)
if !ok {
return fmt.Errorf("OAuth2 server signing key is not an RSA key")
}
kid := keyCfg.KID
if kid == "" {
kid = "default"
}
if keyCfg.Active {
hasActive = true
activeSigningKeyPEM = keyCfg.PrivateKey
}
oauth2SigningKeys = append(
oauth2SigningKeys,
oauth2server.SigningKey{
PrivateKey: rsaKey,
KID: kid,
Active: keyCfg.Active,
},
)
}
if !hasActive {
return fmt.Errorf("cannot configure OAuth2 server: at least one signing key must be active")
}
// Auto-register public-client (CIMD) connectors, which need no operator
// credentials: the client_id is this deployment's hosted CIMD metadata
// URL and the OAuth2 state token is signed with a key derived from the
// active OAuth2 server signing key. Providers an operator configured
// explicitly (already registered from impl.cfg.Connectors above) are
// left untouched.
connectorStateKey := connector.DeriveConnectorStateKey(activeSigningKeyPEM)
cimdClientID := baseURL.WithPath(connector.CIMDMetadataPath).MustString()
for _, reg := range providerRegistry.PublicClients() {
if _, err := defaultConnectorRegistry.Get(string(reg.Provider)); err == nil {
continue
}
oauth2c := &connector.OAuth2Connector{
ClientID: cimdClientID,
StateSigningKey: connectorStateKey,
}
if err := providerRegistry.ApplyOAuth2Defaults(string(reg.Provider), redirectURI, oauth2c); err != nil {
return fmt.Errorf("cannot apply oauth2 defaults for public client %q: %w", reg.Provider, err)
}
if err := defaultConnectorRegistry.Register(string(reg.Provider), oauth2c); err != nil {
return fmt.Errorf("cannot register public client connector %q: %w", reg.Provider, err)
}
}
iamService, err := iam.NewService(
ctx,
pgClient,
fileManagerService,
hp,
iam.Config{
DisableSignup: impl.cfg.Auth.DisableSignup,
InvitationTokenValidity: time.Duration(impl.cfg.Auth.InvitationConfirmationTokenValidity) * time.Second,
PasswordResetTokenValidity: time.Duration(impl.cfg.Auth.PasswordResetTokenValidity) * time.Second,
MagicLinkTokenValidity: time.Duration(impl.cfg.Auth.MagicLinkTokenValidity) * time.Second,
SessionDuration: time.Duration(impl.cfg.Auth.Cookie.Duration) * time.Hour,
Bucket: impl.cfg.AWS.Bucket,
TokenSecret: impl.cfg.Auth.Cookie.Secret,
BaseURL: baseURL,
EncryptionKey: encryptionKey,
Certificate: samlCert,
PrivateKey: samlKey,
Logger: l.Named("iam"),
TracerProvider: tp,
Registerer: r,
ConnectorRegistry: defaultConnectorRegistry,
DomainVerificationInterval: impl.cfg.Auth.SAML.DomainVerificationInterval(),
DomainVerificationResolverAddr: impl.cfg.Auth.SAML.DomainVerificationResolverAddr,
SCIMBridgeSyncInterval: time.Duration(impl.cfg.SCIMBridge.SyncInterval) * time.Second,
SCIMBridgePollInterval: time.Duration(impl.cfg.SCIMBridge.PollInterval) * time.Second,
GoogleOIDC: oidc.ProviderConfig{
ClientID: impl.cfg.Auth.Google.ClientID,
ClientSecret: impl.cfg.Auth.Google.ClientSecret,
Enabled: impl.cfg.Auth.Google.Enabled,
},
MicrosoftOIDC: oidc.ProviderConfig{
ClientID: impl.cfg.Auth.Microsoft.ClientID,
ClientSecret: impl.cfg.Auth.Microsoft.ClientSecret,
Enabled: impl.cfg.Auth.Microsoft.Enabled,
},
OAuth2ServerSigningKeys: oauth2SigningKeys,
OAuth2ServerOptions: oauth2ServerOptions(impl.cfg.Auth.OAuth2Server),
},
)
if err != nil {
return fmt.Errorf("cannot create iam service: %w", err)
}
var accountKey crypto.Signer
if impl.cfg.CustomDomains.ACME.AccountKey != "" {
accountKey, err = pemutil.DecodePrivateKey([]byte(impl.cfg.CustomDomains.ACME.AccountKey))
if err != nil {
return fmt.Errorf("cannot decode ACME account key: %w", err)
}
l.Info("using configured ACME account key")
}
var rootCAs *x509.CertPool
if impl.cfg.CustomDomains.ACME.RootCA != "" {
rootCAs = x509.NewCertPool()
if !rootCAs.AppendCertsFromPEM([]byte(impl.cfg.CustomDomains.ACME.RootCA)) {
return fmt.Errorf("cannot parse ACME root CA certificate")
}
}
acmeService, err := certmanager.NewACMEService(
impl.cfg.CustomDomains.ACME.Email,
keys.Type(impl.cfg.CustomDomains.ACME.KeyType),
impl.cfg.CustomDomains.ACME.Directory,
accountKey,
rootCAs,
l,
)
if err != nil {
return fmt.Errorf("cannot initialize ACME service: %w", err)
}
slackService := slack.NewService(
pgClient,
impl.cfg.GetSlackSigningSecret(),
baseURL.String(),
impl.cfg.Auth.Cookie.Secret,
l.Named("slack"),
)
esignService := esign.NewService(
pgClient,
fileManagerService,
html2pdfConverter,
impl.cfg.ESign.TSAURL,
impl.cfg.AWS.Bucket,
l.Named("esign"),
)
mailmanService := mailman.NewService(pgClient, fileManagerService, impl.cfg.Auth.Cookie.Secret, baseURL, impl.cfg.AWS.Bucket, encryptionKey, l)
cookieBannerService := cookiebanner.NewService(pgClient, impl.cfg.Branding)
proboService, err := probo.NewService(
ctx,
encryptionKey,
pgClient,
s3Client,
impl.cfg.AWS.Bucket,
baseURL.String(),
impl.cfg.Auth.Cookie.Secret,
proboLLMClient,
probo.LLMConfig{
Model: proboAgentCfg.ModelName,
Temperature: ref.UnrefOrZero(proboAgentCfg.Temperature),
MaxTokens: ref.UnrefOrZero(proboAgentCfg.MaxTokens),
},
html2pdfConverter,
acmeService,
fileManagerService,
l.Named("probo"),
slackService,
iamService,
esignService,
defaultConnectorRegistry,
time.Duration(impl.cfg.Auth.InvitationConfirmationTokenValidity)*time.Second,
)
if err != nil {
return fmt.Errorf("cannot create probo service: %w", err)
}
trustService := trust.NewService(
pgClient,
s3Client,
impl.cfg.AWS.Bucket,
baseURL.String(),
impl.cfg.GetSlackSigningSecret(),
iamService,
esignService,
html2pdfConverter,
fileManagerService,
l,
slackService,
)
accessReviewService := accessreview.NewService(
pgClient,
encryptionKey,
defaultConnectorRegistry,
providerRegistry,
l.Named("access-review"),
)
agentRunService := agentrun.NewService(pgClient)
iamService.Authorizer.RegisterPolicySet(agentrun.PolicySet())
iamService.Authorizer.RegisterPolicySet(accessreview.PolicySet())
thirdPartyService := thirdparty.NewService(pgClient, fileManagerService, thirdPartyVetter)
riskManagementService := riskmanagement.NewService(pgClient)
serverHandler, err := server.NewServer(
server.Config{
AllowedOrigins: impl.cfg.Api.Cors.AllowedOrigins,
ExtraHeaderFields: impl.cfg.Api.ExtraHeaderFields,
Probo: proboService,
File: fileManagerService,
IAM: iamService,
Trust: trustService,
ESign: esignService,
AccessReview: accessReviewService,
AgentRun: agentRunService,
Mailman: mailmanService,
CookieBanner: cookieBannerService,
Geoloc: geolocService,
ThirdParty: thirdPartyService,
RiskManagement: riskManagementService,
Slack: slackService,
ConnectorRegistry: defaultConnectorRegistry,
ProviderRegistry: providerRegistry,
BaseURL: baseURL,
CustomDomainCname: impl.cfg.CustomDomains.CnameTarget,
TokenSecret: impl.cfg.Auth.Cookie.Secret,
Logger: l.Named("http.server"),
Cookie: securecookie.Config{
Name: impl.cfg.Auth.Cookie.Name,
Domain: impl.cfg.Auth.Cookie.Domain,
Path: "/",
MaxAge: int(time.Duration(impl.cfg.Auth.Cookie.Duration) * time.Hour),
Secret: impl.cfg.Auth.Cookie.Secret,
Secure: impl.cfg.Auth.Cookie.Secure,
HTTPOnly: true,
SameSite: http.SameSiteLaxMode,
},
},
)
if err != nil {
return fmt.Errorf("cannot create server: %w", err)
}
apiServerCtx, stopApiServer := context.WithCancel(context.Background())
defer stopApiServer()
wg.Go(
func() {
if err := impl.runApiServer(apiServerCtx, l, r, tp, serverHandler); err != nil {
cancel(fmt.Errorf("api server crashed: %w", err))
}
},
)
mailerCtx, stopMailer := context.WithCancel(context.Background())
sendingWorker := mailer.NewSendingWorker(
pgClient,
fileManagerService,
impl.cfg.Notifications.Mailer.SenderName,
impl.cfg.Notifications.Mailer.SenderEmail,
mailer.SMTPConfig{
Addr: impl.cfg.Notifications.Mailer.SMTP.Addr,
User: impl.cfg.Notifications.Mailer.SMTP.User,
Password: impl.cfg.Notifications.Mailer.SMTP.Password,
TLSRequired: impl.cfg.Notifications.Mailer.SMTP.TLSRequired,
HelloName: impl.cfg.Notifications.Mailer.SMTP.HelloName,
},
l.Named("sending-worker"),
[]mailer.SendingWorkerOption{
mailer.WithSendingWorkerSMTPTimeout(time.Second * 10),
},
worker.WithInterval(time.Duration(impl.cfg.Notifications.Mailer.MailerInterval)*time.Second),
worker.WithMaxConcurrency(20),
)
wg.Go(
func() {
if err := sendingWorker.Run(mailerCtx); err != nil {
cancel(fmt.Errorf("sending worker crashed: %w", err))
}
},
)
slackSenderCtx, stopSlackSender := context.WithCancel(context.Background())
slackSender := slack.NewSender(pgClient, l.Named("slack-sender"), encryptionKey, slack.Config{
Interval: time.Duration(impl.cfg.Notifications.Slack.SenderInterval) * time.Second,
})
wg.Go(
func() {
if err := slackSender.Run(slackSenderCtx); err != nil {
cancel(fmt.Errorf("slack sender crashed: %w", err))
}
},
)
webhookSenderCtx, stopWebhookSender := context.WithCancel(context.Background())
webhookSender := webhook.NewSender(pgClient, l.Named("webhook-sender"), webhook.Config{
Interval: time.Duration(impl.cfg.Notifications.Webhook.SenderInterval) * time.Second,
CacheTTL: time.Duration(impl.cfg.Notifications.Webhook.CacheTTL) * time.Second,
EncryptionKey: encryptionKey,
Host: baseURL.String(),
})
wg.Go(
func() {
if err := webhookSender.Run(webhookSenderCtx); err != nil {
cancel(fmt.Errorf("webhook sender crashed: %w", err))
}
},
)
exportJobExporterCtx, stopExportJobExporter := context.WithCancel(context.Background())
wg.Go(
func() {
if err := impl.runExportJob(exportJobExporterCtx, proboService, l.Named("export-job-exporter")); err != nil {
cancel(fmt.Errorf("export job exporter crashed: %w", err))
}
},
)
documentPDFWorker := probo.NewDocumentPDFWorker(
proboService,
l.Named("document-pdf-worker"),
worker.WithInterval(30*time.Second),
)
documentPDFWorkerCtx, stopDocumentPDFWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := documentPDFWorker.Run(documentPDFWorkerCtx); err != nil {
cancel(fmt.Errorf("document pdf worker crashed: %w", err))
}
},
)
documentNotificationInterval := time.Duration(impl.cfg.Notifications.Document.Interval) * time.Second
if documentNotificationInterval <= 0 {
documentNotificationInterval = 5 * time.Minute
}
documentNotificationDebounce := time.Duration(impl.cfg.Notifications.Document.DebounceDelay) * time.Second
if documentNotificationDebounce <= 0 {
documentNotificationDebounce = 15 * time.Minute
}
documentNotificationReminder := time.Duration(impl.cfg.Notifications.Document.ReminderInterval) * time.Second
if documentNotificationReminder <= 0 {
documentNotificationReminder = 24 * time.Hour
}
documentNotificationWorker := probo.NewDocumentNotificationWorker(
proboService,
l.Named("document-notification-worker"),
probo.DocumentNotificationWorkerConfig{
DebounceDelay: documentNotificationDebounce,
ReminderInterval: documentNotificationReminder,
},
worker.WithInterval(documentNotificationInterval),
)
documentNotificationCtx, stopDocumentNotification := context.WithCancel(context.Background())
wg.Go(
func() {
if err := documentNotificationWorker.Run(documentNotificationCtx); err != nil {
cancel(fmt.Errorf("document notification worker crashed: %w", err))
}
},
)
accessReviewWorkerCtx, stopAccessReviewWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := accessReviewService.Run(accessReviewWorkerCtx); err != nil {
cancel(fmt.Errorf("access review source fetcher crashed: %w", err))
}
},
)
iamServiceCtx, stopIAMService := context.WithCancel(context.Background())
wg.Go(
func() {
if err := iamService.Run(iamServiceCtx); err != nil {
cancel(fmt.Errorf("iam service crashed: %w", err))
}
},
)
esignServiceCtx, stopESignService := context.WithCancel(context.Background())
wg.Go(
func() {
if err := esignService.Run(esignServiceCtx, trustService.EmailPresenterConfigByOrganizationID); err != nil {
cancel(fmt.Errorf("esign service crashed: %w", err))
}
},
)
trackerPatternAnalysisWorker := cookiebanner.NewPatternAnalysisWorker(cookieBannerService, pgClient, l)
trackerPatternAnalysisWorkerCtx, stopTrackerPatternAnalysisWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := trackerPatternAnalysisWorker.Run(trackerPatternAnalysisWorkerCtx); err != nil {
cancel(fmt.Errorf("tracker pattern analysis worker crashed: %w", err))
}
},
)
trackerPolicyWorker := probo.NewTrackerPolicyWorker(proboService.GeneratedDocuments, pgClient, l)
trackerPolicyWorkerCtx, stopTrackerPolicyWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := trackerPolicyWorker.Run(trackerPolicyWorkerCtx); err != nil {
cancel(fmt.Errorf("tracker policy worker crashed: %w", err))
}
},
)
trackerMappingWorker := cookiebanner.NewTrackerMappingWorker(
pgClient,
l,
trackerMappingCfg,
thirdPartyDisambiguationCfg,
time.Duration(impl.cfg.TrackerMappingWorker.StaleAfter)*time.Second,
worker.WithInterval(time.Duration(impl.cfg.TrackerMappingWorker.Interval)*time.Second),
worker.WithMaxConcurrency(impl.cfg.TrackerMappingWorker.MaxConcurrency),
)
trackerMappingWorkerCtx, stopTrackerMappingWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := trackerMappingWorker.Run(trackerMappingWorkerCtx); err != nil {
cancel(fmt.Errorf("tracker mapping worker crashed: %w", err))
}
},
)
// The common-pattern enrichment worker needs an LLM client (it
// researches descriptions via the agent), so it is only started when
// the tracker agents are configured.
stopCommonPatternEnrichmentWorker := func() {}
if trackerEnrichmentCfg.LLMClient != nil {
commonPatternEnrichmentWorker := cookiebanner.NewCommonPatternEnrichmentWorker(
pgClient,
l,
trackerEnrichmentCfg,
trackerMappingCfg,
time.Duration(impl.cfg.CommonPatternEnrichmentWorker.StaleAfter)*time.Second,
0,
worker.WithInterval(time.Duration(impl.cfg.CommonPatternEnrichmentWorker.Interval)*time.Second),
worker.WithMaxConcurrency(impl.cfg.CommonPatternEnrichmentWorker.MaxConcurrency),
)
var commonPatternEnrichmentWorkerCtx context.Context
commonPatternEnrichmentWorkerCtx, stopCommonPatternEnrichmentWorker = context.WithCancel(context.Background())
wg.Go(
func() {
if err := commonPatternEnrichmentWorker.Run(commonPatternEnrichmentWorkerCtx); err != nil {
cancel(fmt.Errorf("common pattern enrichment worker crashed: %w", err))
}
},
)
}
// The common-third-party enrichment worker fills catalog metadata
// (URLs, address, certifications, logo) via two agents plus a
// deterministic logo step. It needs an LLM client, so it is only
// started when its agent config is present.
stopCommonThirdPartyEnrichmentWorker := func() {}
if commonThirdPartyEnrichmentCfg.LLMClient != nil {
commonThirdPartyEnrichmentWorker := thirdparty.NewCommonThirdPartyEnrichmentWorker(
pgClient,
l.Named("common-third-party-enrichment-worker"),
commonThirdPartyEnrichmentCfg,
worker.WithInterval(time.Duration(impl.cfg.CommonThirdPartyEnrichmentWorker.Interval)*time.Second),
worker.WithMaxConcurrency(impl.cfg.CommonThirdPartyEnrichmentWorker.MaxConcurrency),
)
var commonThirdPartyEnrichmentWorkerCtx context.Context
commonThirdPartyEnrichmentWorkerCtx, stopCommonThirdPartyEnrichmentWorker = context.WithCancel(context.Background())
wg.Go(
func() {
if err := commonThirdPartyEnrichmentWorker.Run(commonThirdPartyEnrichmentWorkerCtx); err != nil {
cancel(fmt.Errorf("common third party enrichment worker crashed: %w", err))
}
},
)
}
mailingListWorker := mailman.NewMailingListWorker(mailmanService, pgClient, l.Named("mailing-list-worker"))
mailingListWorkerCtx, stopMailingListWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := mailingListWorker.Run(mailingListWorkerCtx); err != nil {
cancel(fmt.Errorf("mailing list worker crashed: %w", err))
}
},
)
evidenceDescriber := evidencedescriber.New(
evidenceDescriberLLMClient,
evidencedescriber.Config{
Model: evidenceDescriberAgentCfg.ModelName,
Temp: ref.UnrefOrZero(evidenceDescriberAgentCfg.Temperature),
MaxTokens: ref.UnrefOrZero(evidenceDescriberAgentCfg.MaxTokens),
},
)
evidenceDescriptionWorker := probo.NewEvidenceDescriptionWorker(
pgClient,
fileManagerService,
evidenceDescriber,
l.Named("evidence-description-worker"),
probo.EvidenceDescriptionWorkerConfig{
StaleAfter: time.Duration(impl.cfg.EvidenceDescriber.StaleAfter) * time.Second,
},
worker.WithInterval(time.Duration(impl.cfg.EvidenceDescriber.Interval)*time.Second),
worker.WithMaxConcurrency(impl.cfg.EvidenceDescriber.MaxConcurrency),
)
evidenceDescriptionWorkerCtx, stopEvidenceDescriptionWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := evidenceDescriptionWorker.Run(evidenceDescriptionWorkerCtx); err != nil {
cancel(fmt.Errorf("evidence description worker crashed: %w", err))
}
},
)
vettingWorker := thirdparty.NewVettingWorker(
pgClient,
thirdPartyVetter,
l.Named("vetting-worker"),
thirdparty.VettingWorkerConfig{
StaleAfter: time.Duration(impl.cfg.ThirdPartyVetting.StaleAfter) * time.Second,
},
worker.WithInterval(time.Duration(impl.cfg.ThirdPartyVetting.Interval)*time.Second),
worker.WithMaxConcurrency(impl.cfg.ThirdPartyVetting.MaxConcurrency),
)
vettingWorkerCtx, stopVettingWorker := context.WithCancel(context.Background())
wg.Go(
func() {
if err := vettingWorker.Run(vettingWorkerCtx); err != nil {
cancel(fmt.Errorf("vetting worker crashed: %w", err))
}
},
)
trustCenterServerCtx, stopTrustCenterServer := context.WithCancel(context.Background())
defer stopTrustCenterServer()
wg.Go(
func() {
if err := impl.runTrustCenterServer(
trustCenterServerCtx,
l,
r,
tp,
pgClient,
serverHandler.TrustCenterHandler(),
acmeService,
proboService,
encryptionKey,
); err != nil {
cancel(fmt.Errorf("trust center server crashed: %w", err))
}
},
)
<-ctx.Done()
stopApiServer()
stopTrustCenterServer()
stopWebhookSender()
stopESignService()
stopTrackerPatternAnalysisWorker()
stopTrackerPolicyWorker()
stopTrackerMappingWorker()
stopCommonPatternEnrichmentWorker()
stopCommonThirdPartyEnrichmentWorker()
stopMailingListWorker()
stopVettingWorker()
stopEvidenceDescriptionWorker()
stopDocumentPDFWorker()
stopDocumentNotification()
stopExportJobExporter()
stopAccessReviewWorker()
stopIAMService()
stopMailer()
stopSlackSender()
wg.Wait()
pgClient.Close()
return context.Cause(ctx)
}
func (impl *Implm) runExportJob(
ctx context.Context,
proboService *probo.Service,
l *log.Logger,
) error {
LOOP:
select {
case <-ctx.Done():
return ctx.Err()
case <-time.After(30 * time.Second):
if err := proboService.ExportJob(ctx); err != nil {
if !errors.Is(err, coredata.ErrNoExportJobAvailable) {
l.ErrorCtx(ctx, "cannot process export job", log.Error(err))
}
}
goto LOOP
}
}
func (impl *Implm) runApiServer(
ctx context.Context,
l *log.Logger,
r prometheus.Registerer,
tp trace.TracerProvider,
handler http.Handler,
) error {
tracer := tp.Tracer("go.probo.inc/probo/pkg/probod")
ctx, span := tracer.Start(ctx, "probod.runApiServer")
defer span.End()
trustedProxyMiddleware, err := trustedproxy.NewMiddleware(impl.cfg.Api.ProxyProtocol.TrustedProxies)
if err != nil {
span.RecordError(err)
return fmt.Errorf("cannot build trusted proxy middleware: %w", err)
}
handler = trustedProxyMiddleware(handler)
apiServer := httpserver.NewServer(
impl.cfg.Api.Addr,
handler,
httpserver.WithLogger(l),
httpserver.WithRegisterer(r),
httpserver.WithTracerProvider(tp),
)
l.Info("starting api server", log.String("addr", apiServer.Addr))
span.AddEvent("API server starting")
listener, err := net.Listen("tcp", apiServer.Addr)
if err != nil {
span.RecordError(err)
return fmt.Errorf("cannot listen on %q: %w", apiServer.Addr, err)
}
if len(impl.cfg.Api.ProxyProtocol.TrustedProxies) > 0 {
policy, err := proxyproto.ConnStrictWhiteListPolicy(impl.cfg.Api.ProxyProtocol.TrustedProxies)
if err != nil {
span.RecordError(err)
return fmt.Errorf("cannot build proxy protocol policy: %w", err)
}
listener = &proxyproto.Listener{
Listener: listener,
ReadHeaderTimeout: 10 * time.Second,
ConnPolicy: policy,
}
l.Info("using proxy protocol", log.Any("trusted-proxies", impl.cfg.Api.ProxyProtocol.TrustedProxies))
}
defer func() { _ = listener.Close() }()
serverErrCh := make(chan error, 1)
go func() {
err := apiServer.Serve(listener)
if err != nil && !errors.Is(err, http.ErrServerClosed) {
serverErrCh <- fmt.Errorf("cannot server http request: %w", err)
}
close(serverErrCh)
}()
l.Info("api server started")
span.AddEvent("API server started")
select {
case err := <-serverErrCh:
if err != nil {
span.RecordError(err)
}
return err
case <-ctx.Done():
}
l.InfoCtx(ctx, "shutting down api server")
span.AddEvent("API server shutting down")
shutdownCtx, cancel := context.WithTimeout(context.Background(), time.Second*10)
defer cancel()
if err := apiServer.Shutdown(shutdownCtx); err != nil {
span.RecordError(err)
return fmt.Errorf("cannot shutdown api server: %w", err)
}
span.AddEvent("API server shutdown complete")
return ctx.Err()
}
func newTrustCenterHTTPRedirectHandler(proboService *probo.Service, l *log.Logger) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
ctx := r.Context()
// Only redirect HTTP requests (no TLS)
if r.TLS != nil {
httpserver.RenderError(w, http.StatusNotFound, errors.New("not found"))
return
}
domain := r.Host
if domain == "" {
httpserver.RenderError(w, http.StatusNotFound, errors.New("not found"))
return
}
// Check if this domain is a trust center domain
_, err := proboService.LoadOrganizationByDomain(ctx, domain)
if err != nil {
// Not a trust center domain, return 404
httpserver.RenderError(w, http.StatusNotFound, errors.New("not found"))
return
}
// This is a trust center domain, redirect to HTTPS
base, err := baseurl.Parse("https://" + domain)
if err != nil {
httpserver.RenderError(w, http.StatusNotFound, errors.New("not found"))
return
}
httpsURL := base.WithPath(r.URL.Path).WithQueryValues(r.URL.Query()).MustString()
l.InfoCtx(
ctx,
"HTTP request to trust center custom domain, redirecting to HTTPS",
log.String("domain", domain),
log.String("path", r.URL.Path),
log.String("to", httpsURL),
)
http.Redirect(w, r, httpsURL, http.StatusMovedPermanently)
})
}
func (impl *Implm) runTrustCenterServer(
ctx context.Context,
l *log.Logger,
r prometheus.Registerer,
tp trace.TracerProvider,
pgClient *pg.Client,
trustRouter http.Handler,
acmeService *certmanager.ACMEService,
proboService *probo.Service,
encryptionKey cipher.EncryptionKey,
) error {
tracer := tp.Tracer("go.probo.inc/probo/pkg/probod")
ctx, span := tracer.Start(ctx, "probod.runTrustCenterServer")
defer span.End()
certSelector := certmanager.NewSelector(pgClient, encryptionKey)
warmer := certmanager.NewCacheStore(pgClient, encryptionKey, l)
if err := warmer.WarmCache(ctx); err != nil {
span.RecordError(err)
l.ErrorCtx(ctx, "cannot warm certificate cache", log.Error(err))
}
renewalInterval := time.Duration(impl.cfg.CustomDomains.RenewalInterval) * time.Second
if renewalInterval == 0 {
renewalInterval = time.Hour
}
renewer := certmanager.NewRenewer(pgClient, acmeService, encryptionKey, renewalInterval, l)
certProvisioningInterval := time.Duration(impl.cfg.CustomDomains.ProvisionInterval) * time.Second
if certProvisioningInterval == 0 {
certProvisioningInterval = 30 * time.Second
}
certProvisioner := certmanager.NewProvisioner(pgClient, acmeService, encryptionKey, impl.cfg.CustomDomains.CnameTarget, impl.cfg.CustomDomains.CAAIssuerDomain, certProvisioningInterval, impl.cfg.CustomDomains.ResolverAddr, l)
g, ctx := errgroup.WithContext(ctx)
l.Info("starting trust center services")
span.AddEvent("Trust center services starting")
g.Go(
func() error {
l.Info("starting certificate renewer")
return renewer.Run(ctx)
},
)
g.Go(
func() error {
l.Info("starting certificate provisioner")
return certProvisioner.Run(ctx)
},
)
httpACMEHandler := certmanager.NewACMEChallengeHandler(
pgClient,
l.Named("http_acme_handler"),
)
httpRedirectHandler := newTrustCenterHTTPRedirectHandler(proboService, l.Named("http_redirect"))
httpServer := httpserver.NewServer(
impl.cfg.TrustCenter.HTTPAddr,
httpACMEHandler.Handle(httpRedirectHandler),
httpserver.WithLogger(l),
httpserver.WithRegisterer(r),
httpserver.WithTracerProvider(tp),
)
g.Go(
func() error {
l.InfoCtx(ctx, "starting HTTP server for ACME challenges", log.String("addr", httpServer.Addr))
span.AddEvent("HTTP server starting")
listener, err := net.Listen("tcp", httpServer.Addr)
if err != nil {
return fmt.Errorf("cannot listen on %q: %w", httpServer.Addr, err)
}
defer func() { _ = listener.Close() }()
if len(impl.cfg.TrustCenter.ProxyProtocol.TrustedProxies) > 0 {
policy, err := proxyproto.ConnStrictWhiteListPolicy(impl.cfg.TrustCenter.ProxyProtocol.TrustedProxies)
if err != nil {
return fmt.Errorf("cannot build proxy protocol policy: %w", err)
}
listener = &proxyproto.Listener{
Listener: listener,
ReadHeaderTimeout: 10 * time.Second,
ConnPolicy: policy,
}
l.Info("using proxy protocol for trust center HTTP server", log.Any("trusted-proxies", impl.cfg.TrustCenter.ProxyProtocol.TrustedProxies))
}
if err := httpServer.Serve(listener); err != nil && err != http.ErrServerClosed {
return fmt.Errorf("cannot serve http requests: %w", err)
}
return nil
},
)
acmeHandler := certmanager.NewACMEChallengeHandler(
pgClient,
l.Named("acme_handler"),
)
handler := acmeHandler.Handle(trustRouter)
ignoreTLSHandshakeErrors := func(level log.Level, msg string, attrs []log.Attr) bool {
return strings.Contains(msg, "tls: no certificates configured") ||
strings.Contains(msg, "client sent an HTTP request to an HTTPS server") ||
strings.Contains(msg, "tls: client offered only unsupported versions") ||
strings.Contains(msg, "EOF") ||
strings.Contains(msg, " i/o timeout") ||
strings.Contains(msg, "tls: first record does not look like a TLS handshake") ||
strings.Contains(msg, "tls: client requested unsupported application protocols") ||
strings.Contains(msg, "read: connection reset by peer") ||
strings.Contains(msg, "tls: unsupported SSLv2 handshake received") ||
strings.Contains(msg, "tls: no cipher suite supported by both client and server") ||
strings.Contains(msg, "tls: received record with version")
}
httpServerLogger := l.Named("", log.SkipMatch(ignoreTLSHandshakeErrors))
httpsServer := httpserver.NewServer(
impl.cfg.TrustCenter.HTTPSAddr,
handler,
httpserver.WithLogger(httpServerLogger),
httpserver.WithRegisterer(r),
httpserver.WithTracerProvider(tp),
)
httpsServer.TLSConfig = &tls.Config{
GetCertificate: func(hello *tls.ClientHelloInfo) (*tls.Certificate, error) {
cert, err := certSelector.GetCertificate(hello)
// Silently reject connections without SNI (load balancers, health checks, scanners)
if err != nil {
if _, ok := errors.AsType[*certmanager.NoSNIError](err); ok {
return nil, nil
}
if errors.Is(err, coredata.ErrResourceNotFound) {
return nil, nil
}
}
return cert, err
},
MinVersion: tls.VersionTLS12,
CipherSuites: []uint16{
tls.TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384,
tls.TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256,
tls.TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384,
tls.TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,
},
}
httpsServer.ReadTimeout = 30 * time.Second
httpsServer.WriteTimeout = 30 * time.Second
g.Go(
func() error {
l.InfoCtx(ctx, "starting trust center https server", log.String("addr", httpsServer.Addr))
span.AddEvent("HTTPS server starting")
listener, err := net.Listen("tcp", httpsServer.Addr)
if err != nil {
return fmt.Errorf("cannot listen on %q: %w", httpsServer.Addr, err)
}
defer func() { _ = listener.Close() }()
if len(impl.cfg.TrustCenter.ProxyProtocol.TrustedProxies) > 0 {
policy, err := proxyproto.ConnStrictWhiteListPolicy(impl.cfg.TrustCenter.ProxyProtocol.TrustedProxies)
if err != nil {
return fmt.Errorf("cannot build proxy protocol policy: %w", err)
}
listener = &proxyproto.Listener{
Listener: listener,
ReadHeaderTimeout: 10 * time.Second,
ConnPolicy: policy,
}
l.Info("using proxy protocol for trust center HTTPS server", log.Any("trusted-proxies", impl.cfg.TrustCenter.ProxyProtocol.TrustedProxies))
}
if err := httpsServer.ServeTLS(listener, "", ""); err != nil && err != http.ErrServerClosed {
return fmt.Errorf("cannot serve https requests: %w", err)
}
return nil
},
)
l.Info("trust center servers started")
span.AddEvent("Trust center servers started")
go func() {
<-ctx.Done()
shutdownCtx, cancel := context.WithTimeout(context.Background(), 5*time.Second)
defer cancel()
l.InfoCtx(ctx, "shutting down trust center servers...")
span.AddEvent("Trust center servers shutting down")
if err := httpsServer.Shutdown(shutdownCtx); err != nil {
span.RecordError(err)
l.ErrorCtx(ctx, "cannot shutdown HTTPS server", log.Error(err))
}
if err := httpServer.Shutdown(shutdownCtx); err != nil {
span.RecordError(err)
l.ErrorCtx(ctx, "cannot shutdown HTTP server", log.Error(err))
}
span.AddEvent("Trust center servers shutdown complete")
}()
if err := g.Wait(); err != nil {
span.RecordError(err)
return err
}
return ctx.Err()
}
func oauth2ServerOptions(cfg OAuth2ServerConfig) []oauth2server.Option {
var opts []oauth2server.Option
if cfg.AccessTokenDuration > 0 {
opts = append(opts, oauth2server.WithAccessTokenDuration(time.Duration(cfg.AccessTokenDuration)*time.Second))
}
if cfg.RefreshTokenDuration > 0 {
opts = append(opts, oauth2server.WithRefreshTokenDuration(time.Duration(cfg.RefreshTokenDuration)*time.Second))
}
if cfg.AuthorizationCodeDuration > 0 {
opts = append(opts, oauth2server.WithAuthorizationCodeDuration(time.Duration(cfg.AuthorizationCodeDuration)*time.Second))
}
if cfg.DeviceCodeDuration > 0 {
opts = append(opts, oauth2server.WithDeviceCodeDuration(time.Duration(cfg.DeviceCodeDuration)*time.Second))
}
return opts
}