dd0e8eec14
* copyright headers for agent folder * Ignore test data files * fix proto files and remove headers in agent/uiserver folder * ignore deep-copy files
300 lines
7.6 KiB
Go
300 lines
7.6 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: MPL-2.0
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package servercert
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import (
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"context"
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"testing"
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"time"
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"github.com/hashicorp/consul/agent/cache"
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"github.com/hashicorp/consul/agent/connect"
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"github.com/hashicorp/consul/agent/structs"
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"github.com/hashicorp/consul/lib/retry"
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"github.com/hashicorp/consul/sdk/testutil"
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"github.com/hashicorp/go-memdb"
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"github.com/stretchr/testify/require"
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)
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type fakeStore struct {
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// conf is the current CA configuration stored in the fakeStore.
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conf chan *structs.CAConfiguration
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// tokenEntry is the current server token entry stored in the fakeStore.
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tokenEntry chan *structs.SystemMetadataEntry
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// tokenCanceler will unblock the WatchSet for the token entry.
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tokenCanceler <-chan struct{}
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}
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func (s *fakeStore) CAConfig(_ memdb.WatchSet) (uint64, *structs.CAConfiguration, error) {
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select {
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case conf := <-s.conf:
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return 0, conf, nil
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default:
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return 0, nil, nil
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}
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}
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func (s *fakeStore) setCAConfig() {
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s.conf <- &structs.CAConfiguration{
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ClusterID: connect.TestClusterID,
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}
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}
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func (s *fakeStore) SystemMetadataGet(ws memdb.WatchSet, _ string) (uint64, *structs.SystemMetadataEntry, error) {
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select {
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case entry := <-s.tokenEntry:
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ws.Add(s.tokenCanceler)
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return 0, entry, nil
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default:
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return 0, nil, nil
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}
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}
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func (s *fakeStore) setServerToken(token string, canceler <-chan struct{}) {
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s.tokenCanceler = canceler
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s.tokenEntry <- &structs.SystemMetadataEntry{
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Key: structs.ServerManagementTokenAccessorID,
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Value: token,
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}
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}
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func (s *fakeStore) AbandonCh() <-chan struct{} {
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return make(<-chan struct{})
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}
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type testCert struct {
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pub string
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priv string
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}
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type fakeTLSConfigurator struct {
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cert testCert
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peeringServerName string
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// syncCh is used to signal that an update was handled.
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// It synchronizes readers and writers in different goroutines.
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syncCh chan struct{}
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}
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func (u *fakeTLSConfigurator) UpdateAutoTLSCert(pub, priv string) error {
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u.cert = testCert{
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pub: pub,
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priv: priv,
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}
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u.syncCh <- struct{}{}
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return nil
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}
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func (u *fakeTLSConfigurator) UpdateAutoTLSPeeringServerName(name string) {
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u.peeringServerName = name
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u.syncCh <- struct{}{}
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}
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func (u *fakeTLSConfigurator) timeoutIfNotUpdated(t *testing.T) error {
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t.Helper()
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select {
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case <-u.syncCh:
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case <-time.After(100 * time.Millisecond):
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t.Fatalf("timed out")
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}
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return nil
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}
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type watchInfo struct {
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ctx context.Context
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token string
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}
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type fakeCache struct {
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updateCh chan<- cache.UpdateEvent
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// watched is a map of watched correlation IDs to the ACL token of the request.
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watched map[string]watchInfo
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// syncCh is used to signal that Notify was called.
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// It synchronizes readers and writers in different goroutines.
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syncCh chan struct{}
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}
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func (c *fakeCache) triggerLeafUpdate() {
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c.updateCh <- cache.UpdateEvent{
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CorrelationID: leafWatchID,
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Result: &structs.IssuedCert{
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CertPEM: "cert-pem",
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PrivateKeyPEM: "key-pem",
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ServerURI: "test-uri",
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},
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}
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}
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func (c *fakeCache) Notify(ctx context.Context, t string, r cache.Request, correlationID string, ch chan<- cache.UpdateEvent) error {
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c.watched[correlationID] = watchInfo{ctx: ctx, token: r.CacheInfo().Token}
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c.updateCh = ch
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c.syncCh <- struct{}{}
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return nil
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}
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func (c *fakeCache) timeoutIfNotUpdated(t *testing.T) error {
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t.Helper()
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select {
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case <-c.syncCh:
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case <-time.After(100 * time.Millisecond):
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t.Fatalf("timed out")
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}
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return nil
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}
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func testWaiter() retry.Waiter {
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return retry.Waiter{
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MinFailures: 1,
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MinWait: 20 * time.Millisecond,
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MaxWait: 20 * time.Millisecond,
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}
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}
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func TestCertManager_ACLsDisabled(t *testing.T) {
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tlsConfigurator := fakeTLSConfigurator{syncCh: make(chan struct{}, 1)}
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cache := fakeCache{watched: make(map[string]watchInfo), syncCh: make(chan struct{}, 1)}
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store := fakeStore{
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conf: make(chan *structs.CAConfiguration, 1),
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tokenEntry: make(chan *structs.SystemMetadataEntry, 1),
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}
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mgr := NewCertManager(Deps{
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Logger: testutil.Logger(t),
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Config: Config{
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Datacenter: "my-dc",
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ACLsEnabled: false,
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},
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TLSConfigurator: &tlsConfigurator,
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Cache: &cache,
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GetStore: func() Store { return &store },
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})
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// Override the default waiter to reduce time between retries.
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mgr.waiter = testWaiter()
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require.NoError(t, mgr.Start(context.Background()))
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testutil.RunStep(t, "initial empty state", func(t *testing.T) {
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require.Empty(t, tlsConfigurator.cert)
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require.Empty(t, tlsConfigurator.peeringServerName)
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require.Contains(t, cache.watched, leafWatchID)
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})
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testutil.RunStep(t, "leaf cert update", func(t *testing.T) {
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cache.triggerLeafUpdate()
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// Wait for the update to arrive.
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require.NoError(t, tlsConfigurator.timeoutIfNotUpdated(t))
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expect := testCert{
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pub: "cert-pem",
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priv: "key-pem",
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}
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require.Equal(t, expect, tlsConfigurator.cert)
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})
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testutil.RunStep(t, "ca config update", func(t *testing.T) {
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store.setCAConfig()
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// Wait for the update to arrive.
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require.NoError(t, tlsConfigurator.timeoutIfNotUpdated(t))
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expect := connect.PeeringServerSAN(mgr.config.Datacenter, connect.TestTrustDomain)
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require.Equal(t, expect, tlsConfigurator.peeringServerName)
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})
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}
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func TestCertManager_ACLsEnabled(t *testing.T) {
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tlsConfigurator := fakeTLSConfigurator{syncCh: make(chan struct{}, 1)}
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cache := fakeCache{watched: make(map[string]watchInfo), syncCh: make(chan struct{}, 1)}
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store := fakeStore{
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conf: make(chan *structs.CAConfiguration, 1),
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tokenEntry: make(chan *structs.SystemMetadataEntry, 1),
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}
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mgr := NewCertManager(Deps{
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Logger: testutil.Logger(t),
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Config: Config{
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Datacenter: "my-dc",
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ACLsEnabled: true,
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},
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TLSConfigurator: &tlsConfigurator,
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Cache: &cache,
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GetStore: func() Store { return &store },
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})
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// Override the default waiter to reduce time between retries.
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mgr.waiter = testWaiter()
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require.NoError(t, mgr.Start(context.Background()))
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testutil.RunStep(t, "initial empty state", func(t *testing.T) {
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require.Empty(t, tlsConfigurator.cert)
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require.Empty(t, tlsConfigurator.peeringServerName)
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require.Empty(t, cache.watched)
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})
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var leafCtx context.Context
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tokenCanceler := make(chan struct{})
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testutil.RunStep(t, "server token update", func(t *testing.T) {
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store.setServerToken("first-secret", tokenCanceler)
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require.NoError(t, cache.timeoutIfNotUpdated(t))
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require.Contains(t, cache.watched, leafWatchID)
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require.Equal(t, "first-secret", cache.watched[leafWatchID].token)
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leafCtx = cache.watched[leafWatchID].ctx
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})
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testutil.RunStep(t, "leaf cert update", func(t *testing.T) {
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cache.triggerLeafUpdate()
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// Wait for the update to arrive.
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require.NoError(t, tlsConfigurator.timeoutIfNotUpdated(t))
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expect := testCert{
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pub: "cert-pem",
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priv: "key-pem",
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}
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require.Equal(t, expect, tlsConfigurator.cert)
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})
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testutil.RunStep(t, "another server token update", func(t *testing.T) {
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store.setServerToken("second-secret", nil)
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// Fire the existing WatchSet to simulate a state store update.
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tokenCanceler <- struct{}{}
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// The leaf watch in the cache should have been reset.
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require.NoError(t, cache.timeoutIfNotUpdated(t))
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// The original leaf watch context should have been canceled.
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require.Error(t, leafCtx.Err())
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// A new leaf watch is expected with the new token.
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require.Contains(t, cache.watched, leafWatchID)
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require.Equal(t, "second-secret", cache.watched[leafWatchID].token)
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})
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testutil.RunStep(t, "ca config update", func(t *testing.T) {
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store.setCAConfig()
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// Wait for the update to arrive.
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require.NoError(t, tlsConfigurator.timeoutIfNotUpdated(t))
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expect := connect.PeeringServerSAN(mgr.config.Datacenter, connect.TestTrustDomain)
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require.Equal(t, expect, tlsConfigurator.peeringServerName)
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})
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}
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