336 lines
12 KiB
Go
336 lines
12 KiB
Go
// Copyright 2021 the Pinniped contributors. All Rights Reserved.
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// SPDX-License-Identifier: Apache-2.0
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// Package ldapupstreamwatcher implements a controller which watches LDAPIdentityProviders.
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package ldapupstreamwatcher
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import (
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"context"
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"crypto/x509"
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"encoding/base64"
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"fmt"
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"regexp"
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"time"
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corev1 "k8s.io/api/core/v1"
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"k8s.io/apimachinery/pkg/api/equality"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apimachinery/pkg/labels"
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corev1informers "k8s.io/client-go/informers/core/v1"
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"k8s.io/klog/v2/klogr"
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"go.pinniped.dev/generated/latest/apis/supervisor/idp/v1alpha1"
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pinnipedclientset "go.pinniped.dev/generated/latest/client/supervisor/clientset/versioned"
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idpinformers "go.pinniped.dev/generated/latest/client/supervisor/informers/externalversions/idp/v1alpha1"
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pinnipedcontroller "go.pinniped.dev/internal/controller"
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"go.pinniped.dev/internal/controller/conditionsutil"
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"go.pinniped.dev/internal/controller/supervisorconfig/upstreamwatchers"
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"go.pinniped.dev/internal/controllerlib"
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"go.pinniped.dev/internal/oidc/provider"
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"go.pinniped.dev/internal/upstreamldap"
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)
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const (
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ldapControllerName = "ldap-upstream-observer"
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ldapBindAccountSecretType = corev1.SecretTypeBasicAuth
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testLDAPConnectionTimeout = 90 * time.Second
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// Constants related to conditions.
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typeBindSecretValid = "BindSecretValid"
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typeTLSConfigurationValid = "TLSConfigurationValid"
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typeLDAPConnectionValid = "LDAPConnectionValid"
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reasonLDAPConnectionError = "LDAPConnectionError"
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noTLSConfigurationMessage = "no TLS configuration provided"
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loadedTLSConfigurationMessage = "loaded TLS configuration"
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)
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var (
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secretVersionParser = regexp.MustCompile(` \[validated with Secret ".+" at version "(.+)"]`)
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)
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// UpstreamLDAPIdentityProviderICache is a thread safe cache that holds a list of validated upstream LDAP IDP configurations.
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type UpstreamLDAPIdentityProviderICache interface {
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SetLDAPIdentityProviders([]provider.UpstreamLDAPIdentityProviderI)
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}
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type ldapWatcherController struct {
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cache UpstreamLDAPIdentityProviderICache
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ldapDialer upstreamldap.LDAPDialer
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client pinnipedclientset.Interface
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ldapIdentityProviderInformer idpinformers.LDAPIdentityProviderInformer
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secretInformer corev1informers.SecretInformer
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}
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// New instantiates a new controllerlib.Controller which will populate the provided UpstreamLDAPIdentityProviderICache.
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func New(
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idpCache UpstreamLDAPIdentityProviderICache,
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client pinnipedclientset.Interface,
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ldapIdentityProviderInformer idpinformers.LDAPIdentityProviderInformer,
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secretInformer corev1informers.SecretInformer,
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withInformer pinnipedcontroller.WithInformerOptionFunc,
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) controllerlib.Controller {
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// nil means to use a real production dialer when creating objects to add to the dynamicUpstreamIDPProvider cache.
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return newInternal(idpCache, nil, client, ldapIdentityProviderInformer, secretInformer, withInformer)
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}
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func newInternal(
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idpCache UpstreamLDAPIdentityProviderICache,
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ldapDialer upstreamldap.LDAPDialer,
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client pinnipedclientset.Interface,
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ldapIdentityProviderInformer idpinformers.LDAPIdentityProviderInformer,
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secretInformer corev1informers.SecretInformer,
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withInformer pinnipedcontroller.WithInformerOptionFunc,
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) controllerlib.Controller {
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c := ldapWatcherController{
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cache: idpCache,
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ldapDialer: ldapDialer,
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client: client,
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ldapIdentityProviderInformer: ldapIdentityProviderInformer,
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secretInformer: secretInformer,
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}
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return controllerlib.New(
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controllerlib.Config{Name: ldapControllerName, Syncer: &c},
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withInformer(
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ldapIdentityProviderInformer,
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pinnipedcontroller.MatchAnythingFilter(pinnipedcontroller.SingletonQueue()),
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controllerlib.InformerOption{},
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),
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withInformer(
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secretInformer,
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pinnipedcontroller.MatchAnySecretOfTypeFilter(ldapBindAccountSecretType, pinnipedcontroller.SingletonQueue()),
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controllerlib.InformerOption{},
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),
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)
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}
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// Sync implements controllerlib.Syncer.
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func (c *ldapWatcherController) Sync(ctx controllerlib.Context) error {
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actualUpstreams, err := c.ldapIdentityProviderInformer.Lister().List(labels.Everything())
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if err != nil {
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return fmt.Errorf("failed to list LDAPIdentityProviders: %w", err)
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}
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requeue := false
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validatedUpstreams := make([]provider.UpstreamLDAPIdentityProviderI, 0, len(actualUpstreams))
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for _, upstream := range actualUpstreams {
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valid := c.validateUpstream(ctx.Context, upstream)
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if valid == nil {
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requeue = true
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} else {
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validatedUpstreams = append(validatedUpstreams, valid)
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}
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}
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c.cache.SetLDAPIdentityProviders(validatedUpstreams)
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if requeue {
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return controllerlib.ErrSyntheticRequeue
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}
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return nil
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}
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func (c *ldapWatcherController) validateUpstream(ctx context.Context, upstream *v1alpha1.LDAPIdentityProvider) provider.UpstreamLDAPIdentityProviderI {
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spec := upstream.Spec
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config := &upstreamldap.ProviderConfig{
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Name: upstream.Name,
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Host: spec.Host,
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UserSearch: upstreamldap.UserSearchConfig{
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Base: spec.UserSearch.Base,
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Filter: spec.UserSearch.Filter,
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UsernameAttribute: spec.UserSearch.Attributes.Username,
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UIDAttribute: spec.UserSearch.Attributes.UID,
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},
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Dialer: c.ldapDialer,
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}
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conditions := []*v1alpha1.Condition{}
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secretValidCondition, currentSecretVersion := c.validateSecret(upstream, config)
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tlsValidCondition := c.validateTLSConfig(upstream, config)
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conditions = append(conditions, secretValidCondition, tlsValidCondition)
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// No point in trying to connect to the server if the config was already determined to be invalid.
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if secretValidCondition.Status == v1alpha1.ConditionTrue && tlsValidCondition.Status == v1alpha1.ConditionTrue {
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finishedConfigCondition := c.validateFinishedConfig(ctx, upstream, config, currentSecretVersion)
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// nil when there is no need to update this condition.
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if finishedConfigCondition != nil {
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conditions = append(conditions, finishedConfigCondition)
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}
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}
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hadErrorCondition := c.updateStatus(ctx, upstream, conditions)
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if hadErrorCondition {
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return nil
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}
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return upstreamldap.New(*config)
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}
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func (c *ldapWatcherController) validateTLSConfig(upstream *v1alpha1.LDAPIdentityProvider, config *upstreamldap.ProviderConfig) *v1alpha1.Condition {
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tlsSpec := upstream.Spec.TLS
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if tlsSpec == nil {
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return c.validTLSCondition(noTLSConfigurationMessage)
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}
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if len(tlsSpec.CertificateAuthorityData) == 0 {
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return c.validTLSCondition(loadedTLSConfigurationMessage)
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}
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bundle, err := base64.StdEncoding.DecodeString(tlsSpec.CertificateAuthorityData)
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if err != nil {
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return c.invalidTLSCondition(fmt.Sprintf("certificateAuthorityData is invalid: %s", err.Error()))
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}
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ca := x509.NewCertPool()
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ok := ca.AppendCertsFromPEM(bundle)
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if !ok {
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return c.invalidTLSCondition(fmt.Sprintf("certificateAuthorityData is invalid: %s", upstreamwatchers.ErrNoCertificates))
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}
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config.CABundle = bundle
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return c.validTLSCondition(loadedTLSConfigurationMessage)
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}
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func (c *ldapWatcherController) validateFinishedConfig(ctx context.Context, upstream *v1alpha1.LDAPIdentityProvider, config *upstreamldap.ProviderConfig, currentSecretVersion string) *v1alpha1.Condition {
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ldapProvider := upstreamldap.New(*config)
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if hasPreviousSuccessfulConditionForCurrentSpecGenerationAndSecretVersion(upstream, currentSecretVersion) {
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return nil
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}
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testConnectionTimeout, cancelFunc := context.WithTimeout(ctx, testLDAPConnectionTimeout)
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defer cancelFunc()
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return c.testConnection(testConnectionTimeout, upstream, config, ldapProvider, currentSecretVersion)
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}
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func (c *ldapWatcherController) testConnection(
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ctx context.Context,
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upstream *v1alpha1.LDAPIdentityProvider,
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config *upstreamldap.ProviderConfig,
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ldapProvider *upstreamldap.Provider,
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currentSecretVersion string,
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) *v1alpha1.Condition {
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err := ldapProvider.TestConnection(ctx)
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if err != nil {
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return &v1alpha1.Condition{
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Type: typeLDAPConnectionValid,
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Status: v1alpha1.ConditionFalse,
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Reason: reasonLDAPConnectionError,
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Message: fmt.Sprintf(`could not successfully connect to "%s" and bind as user "%s": %s`,
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config.Host, config.BindUsername, err.Error()),
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}
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}
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return &v1alpha1.Condition{
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Type: typeLDAPConnectionValid,
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Status: v1alpha1.ConditionTrue,
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Reason: upstreamwatchers.ReasonSuccess,
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Message: fmt.Sprintf(`successfully able to connect to "%s" and bind as user "%s" [validated with Secret "%s" at version "%s"]`,
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config.Host, config.BindUsername, upstream.Spec.Bind.SecretName, currentSecretVersion),
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}
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}
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func hasPreviousSuccessfulConditionForCurrentSpecGenerationAndSecretVersion(upstream *v1alpha1.LDAPIdentityProvider, currentSecretVersion string) bool {
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currentGeneration := upstream.Generation
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for _, c := range upstream.Status.Conditions {
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if c.Type == typeLDAPConnectionValid && c.Status == v1alpha1.ConditionTrue && c.ObservedGeneration == currentGeneration {
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// Found a previously successful condition for the current spec generation.
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// Now figure out which version of the bind Secret was used during that previous validation.
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matches := secretVersionParser.FindStringSubmatch(c.Message)
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if len(matches) != 2 {
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continue
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}
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validatedSecretVersion := matches[1]
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if validatedSecretVersion == currentSecretVersion {
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return true
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}
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}
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}
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return false
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}
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func (c *ldapWatcherController) validTLSCondition(message string) *v1alpha1.Condition {
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return &v1alpha1.Condition{
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Type: typeTLSConfigurationValid,
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Status: v1alpha1.ConditionTrue,
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Reason: upstreamwatchers.ReasonSuccess,
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Message: message,
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}
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}
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func (c *ldapWatcherController) invalidTLSCondition(message string) *v1alpha1.Condition {
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return &v1alpha1.Condition{
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Type: typeTLSConfigurationValid,
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Status: v1alpha1.ConditionFalse,
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Reason: upstreamwatchers.ReasonInvalidTLSConfig,
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Message: message,
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}
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}
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func (c *ldapWatcherController) validateSecret(upstream *v1alpha1.LDAPIdentityProvider, config *upstreamldap.ProviderConfig) (*v1alpha1.Condition, string) {
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secretName := upstream.Spec.Bind.SecretName
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secret, err := c.secretInformer.Lister().Secrets(upstream.Namespace).Get(secretName)
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if err != nil {
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return &v1alpha1.Condition{
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Type: typeBindSecretValid,
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Status: v1alpha1.ConditionFalse,
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Reason: upstreamwatchers.ReasonNotFound,
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Message: err.Error(),
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}, ""
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}
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if secret.Type != corev1.SecretTypeBasicAuth {
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return &v1alpha1.Condition{
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Type: typeBindSecretValid,
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Status: v1alpha1.ConditionFalse,
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Reason: upstreamwatchers.ReasonWrongType,
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Message: fmt.Sprintf("referenced Secret %q has wrong type %q (should be %q)",
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secretName, secret.Type, corev1.SecretTypeBasicAuth),
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}, secret.ResourceVersion
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}
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config.BindUsername = string(secret.Data[corev1.BasicAuthUsernameKey])
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config.BindPassword = string(secret.Data[corev1.BasicAuthPasswordKey])
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if len(config.BindUsername) == 0 || len(config.BindPassword) == 0 {
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return &v1alpha1.Condition{
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Type: typeBindSecretValid,
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Status: v1alpha1.ConditionFalse,
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Reason: upstreamwatchers.ReasonMissingKeys,
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Message: fmt.Sprintf("referenced Secret %q is missing required keys %q",
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secretName, []string{corev1.BasicAuthUsernameKey, corev1.BasicAuthPasswordKey}),
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}, secret.ResourceVersion
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}
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return &v1alpha1.Condition{
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Type: typeBindSecretValid,
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Status: v1alpha1.ConditionTrue,
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Reason: upstreamwatchers.ReasonSuccess,
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Message: "loaded bind secret",
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}, secret.ResourceVersion
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}
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func (c *ldapWatcherController) updateStatus(ctx context.Context, upstream *v1alpha1.LDAPIdentityProvider, conditions []*v1alpha1.Condition) bool {
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log := klogr.New().WithValues("namespace", upstream.Namespace, "name", upstream.Name)
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updated := upstream.DeepCopy()
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hadErrorCondition := conditionsutil.Merge(conditions, upstream.Generation, &updated.Status.Conditions, log)
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updated.Status.Phase = v1alpha1.LDAPPhaseReady
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if hadErrorCondition {
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updated.Status.Phase = v1alpha1.LDAPPhaseError
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}
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if equality.Semantic.DeepEqual(upstream, updated) {
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return hadErrorCondition
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}
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_, err := c.client.
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IDPV1alpha1().
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LDAPIdentityProviders(upstream.Namespace).
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UpdateStatus(ctx, updated, metav1.UpdateOptions{})
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if err != nil {
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log.Error(err, "failed to update status")
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}
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return hadErrorCondition
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}
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