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https://github.com/kubernetes/client-go.git
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Added rotation metric to certificate manager
Kubernetes-commit: 7adb18120079016ed8aea1bd40e5cde161827a1d
This commit is contained in:
parent
890ae18798
commit
7bd7ed8621
@ -113,8 +113,17 @@ type Config struct {
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// quickly replaced with a unique cert/key pair.
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// quickly replaced with a unique cert/key pair.
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BootstrapKeyPEM []byte
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BootstrapKeyPEM []byte
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// CertificateExpiration will record a metric that shows the remaining
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// CertificateExpiration will record a metric that shows the remaining
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// lifetime of the certificate.
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// lifetime of the certificate. This metric is a gauge because only the
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// current cert expiry time is really useful. Reading this metric at any
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// time simply gives the next expiration date, no need to keep some
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// history (histogram) of all previous expiry dates.
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CertificateExpiration Gauge
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CertificateExpiration Gauge
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// CertificateRotation will record a metric showing the time in seconds
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// that certificates lived before being rotated. This metric is a histogram
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// because there is value in keeping a history of rotation cadences. It
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// allows one to setup monitoring and alerting of unexpected rotation
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// behavior and track trends in rotation frequency.
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CertificateRotation Histogram
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}
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}
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// Store is responsible for getting and updating the current certificate.
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// Store is responsible for getting and updating the current certificate.
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@ -139,6 +148,12 @@ type Gauge interface {
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Set(float64)
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Set(float64)
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}
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}
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// Histogram will record the time a rotated certificate was used before being
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// rotated.
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type Histogram interface {
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Observe(float64)
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}
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// NoCertKeyError indicates there is no cert/key currently available.
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// NoCertKeyError indicates there is no cert/key currently available.
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type NoCertKeyError string
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type NoCertKeyError string
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@ -163,6 +178,7 @@ type manager struct {
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certStore Store
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certStore Store
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certificateExpiration Gauge
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certificateExpiration Gauge
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certificateRotation Histogram
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// the following variables must only be accessed under certAccessLock
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// the following variables must only be accessed under certAccessLock
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certAccessLock sync.RWMutex
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certAccessLock sync.RWMutex
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@ -174,6 +190,9 @@ type manager struct {
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clientFn CSRClientFunc
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clientFn CSRClientFunc
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stopCh chan struct{}
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stopCh chan struct{}
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stopped bool
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stopped bool
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// Set to time.Now but can be stubbed out for testing
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now func() time.Time
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}
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}
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// NewManager returns a new certificate manager. A certificate manager is
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// NewManager returns a new certificate manager. A certificate manager is
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@ -203,6 +222,8 @@ func NewManager(config *Config) (Manager, error) {
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cert: cert,
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cert: cert,
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forceRotation: forceRotation,
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forceRotation: forceRotation,
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certificateExpiration: config.CertificateExpiration,
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certificateExpiration: config.CertificateExpiration,
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certificateRotation: config.CertificateRotation,
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now: time.Now,
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}
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}
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return &m, nil
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return &m, nil
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@ -215,7 +236,7 @@ func NewManager(config *Config) (Manager, error) {
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func (m *manager) Current() *tls.Certificate {
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func (m *manager) Current() *tls.Certificate {
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m.certAccessLock.RLock()
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m.certAccessLock.RLock()
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defer m.certAccessLock.RUnlock()
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defer m.certAccessLock.RUnlock()
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if m.cert != nil && m.cert.Leaf != nil && time.Now().After(m.cert.Leaf.NotAfter) {
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if m.cert != nil && m.cert.Leaf != nil && m.now().After(m.cert.Leaf.NotAfter) {
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klog.V(2).Infof("Current certificate is expired.")
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klog.V(2).Infof("Current certificate is expired.")
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return nil
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return nil
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}
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}
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@ -256,7 +277,7 @@ func (m *manager) Start() {
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templateChanged := make(chan struct{})
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templateChanged := make(chan struct{})
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go wait.Until(func() {
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go wait.Until(func() {
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deadline := m.nextRotationDeadline()
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deadline := m.nextRotationDeadline()
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if sleepInterval := deadline.Sub(time.Now()); sleepInterval > 0 {
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if sleepInterval := deadline.Sub(m.now()); sleepInterval > 0 {
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klog.V(2).Infof("Waiting %v for next certificate rotation", sleepInterval)
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klog.V(2).Infof("Waiting %v for next certificate rotation", sleepInterval)
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timer := time.NewTimer(sleepInterval)
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timer := time.NewTimer(sleepInterval)
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@ -421,7 +442,10 @@ func (m *manager) rotateCerts() (bool, error) {
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return false, nil
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return false, nil
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}
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}
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m.updateCached(cert)
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if old := m.updateCached(cert); old != nil && m.certificateRotation != nil {
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m.certificateRotation.Observe(m.now().Sub(old.Leaf.NotBefore).Seconds())
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}
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return true, nil
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return true, nil
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}
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}
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@ -490,14 +514,14 @@ func (m *manager) nextRotationDeadline() time.Time {
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// forceRotation is not protected by locks
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// forceRotation is not protected by locks
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if m.forceRotation {
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if m.forceRotation {
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m.forceRotation = false
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m.forceRotation = false
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return time.Now()
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return m.now()
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}
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}
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m.certAccessLock.RLock()
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m.certAccessLock.RLock()
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defer m.certAccessLock.RUnlock()
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defer m.certAccessLock.RUnlock()
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if !m.certSatisfiesTemplateLocked() {
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if !m.certSatisfiesTemplateLocked() {
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return time.Now()
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return m.now()
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}
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}
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notAfter := m.cert.Leaf.NotAfter
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notAfter := m.cert.Leaf.NotAfter
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@ -523,13 +547,15 @@ var jitteryDuration = func(totalDuration float64) time.Duration {
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return wait.Jitter(time.Duration(totalDuration), 0.2) - time.Duration(totalDuration*0.3)
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return wait.Jitter(time.Duration(totalDuration), 0.2) - time.Duration(totalDuration*0.3)
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}
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}
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// updateCached sets the most recent retrieved cert. It also sets the server
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// updateCached sets the most recent retrieved cert and returns the old cert.
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// as assumed healthy.
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// It also sets the server as assumed healthy.
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func (m *manager) updateCached(cert *tls.Certificate) {
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func (m *manager) updateCached(cert *tls.Certificate) *tls.Certificate {
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m.certAccessLock.Lock()
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m.certAccessLock.Lock()
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defer m.certAccessLock.Unlock()
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defer m.certAccessLock.Unlock()
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m.serverHealth = true
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m.serverHealth = true
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old := m.cert
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m.cert = cert
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m.cert = cert
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return old
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}
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}
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// updateServerError takes an error returned by the server and infers
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// updateServerError takes an error returned by the server and infers
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@ -163,12 +163,17 @@ func TestNewManagerNoRotation(t *testing.T) {
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}
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}
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}
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}
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type gaugeMock struct {
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type metricMock struct {
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calls int
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calls int
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lastValue float64
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lastValue float64
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}
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}
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func (g *gaugeMock) Set(v float64) {
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func (g *metricMock) Set(v float64) {
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g.calls++
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g.lastValue = v
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}
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func (g *metricMock) Observe(v float64) {
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g.calls++
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g.calls++
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g.lastValue = v
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g.lastValue = v
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}
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}
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@ -195,7 +200,7 @@ func TestSetRotationDeadline(t *testing.T) {
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for _, tc := range testCases {
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for _, tc := range testCases {
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t.Run(tc.name, func(t *testing.T) {
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t.Run(tc.name, func(t *testing.T) {
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g := gaugeMock{}
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g := metricMock{}
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m := manager{
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m := manager{
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cert: &tls.Certificate{
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cert: &tls.Certificate{
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Leaf: &x509.Certificate{
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Leaf: &x509.Certificate{
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@ -206,6 +211,7 @@ func TestSetRotationDeadline(t *testing.T) {
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getTemplate: func() *x509.CertificateRequest { return &x509.CertificateRequest{} },
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getTemplate: func() *x509.CertificateRequest { return &x509.CertificateRequest{} },
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usages: []certificates.KeyUsage{},
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usages: []certificates.KeyUsage{},
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certificateExpiration: &g,
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certificateExpiration: &g,
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now: func() time.Time { return now },
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}
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}
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jitteryDuration = func(float64) time.Duration { return time.Duration(float64(tc.notAfter.Sub(tc.notBefore)) * 0.7) }
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jitteryDuration = func(float64) time.Duration { return time.Duration(float64(tc.notAfter.Sub(tc.notBefore)) * 0.7) }
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lowerBound := tc.notBefore.Add(time.Duration(float64(tc.notAfter.Sub(tc.notBefore)) * 0.7))
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lowerBound := tc.notBefore.Add(time.Duration(float64(tc.notAfter.Sub(tc.notBefore)) * 0.7))
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@ -383,6 +389,7 @@ func TestCertSatisfiesTemplate(t *testing.T) {
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m := manager{
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m := manager{
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cert: tlsCert,
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cert: tlsCert,
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getTemplate: func() *x509.CertificateRequest { return tc.template },
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getTemplate: func() *x509.CertificateRequest { return tc.template },
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now: time.Now,
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}
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}
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result := m.certSatisfiesTemplate()
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result := m.certSatisfiesTemplate()
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@ -407,6 +414,7 @@ func TestRotateCertCreateCSRError(t *testing.T) {
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clientFn: func(_ *tls.Certificate) (certificatesclient.CertificateSigningRequestInterface, error) {
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clientFn: func(_ *tls.Certificate) (certificatesclient.CertificateSigningRequestInterface, error) {
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return fakeClient{failureType: createError}, nil
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return fakeClient{failureType: createError}, nil
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},
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},
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now: func() time.Time { return now },
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}
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}
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if success, err := m.rotateCerts(); success {
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if success, err := m.rotateCerts(); success {
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@ -430,6 +438,7 @@ func TestRotateCertWaitingForResultError(t *testing.T) {
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clientFn: func(_ *tls.Certificate) (certificatesclient.CertificateSigningRequestInterface, error) {
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clientFn: func(_ *tls.Certificate) (certificatesclient.CertificateSigningRequestInterface, error) {
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return fakeClient{failureType: watchError}, nil
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return fakeClient{failureType: watchError}, nil
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},
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},
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now: func() time.Time { return now },
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}
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}
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defer func(t time.Duration) { certificateWaitTimeout = t }(certificateWaitTimeout)
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defer func(t time.Duration) { certificateWaitTimeout = t }(certificateWaitTimeout)
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@ -945,6 +954,40 @@ func TestServerHealth(t *testing.T) {
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}
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}
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}
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}
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func TestRotationLogsDuration(t *testing.T) {
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h := metricMock{}
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now := time.Now()
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certIss := now.Add(-2 * time.Hour)
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m := manager{
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cert: &tls.Certificate{
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Leaf: &x509.Certificate{
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NotBefore: certIss,
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NotAfter: now.Add(-1 * time.Hour),
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},
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},
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certStore: &fakeStore{cert: expiredStoreCertData.certificate},
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getTemplate: func() *x509.CertificateRequest { return &x509.CertificateRequest{} },
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clientFn: func(_ *tls.Certificate) (certificatesclient.CertificateSigningRequestInterface, error) {
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return &fakeClient{
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certificatePEM: apiServerCertData.certificatePEM,
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}, nil
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},
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certificateRotation: &h,
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now: func() time.Time { return now },
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}
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ok, err := m.rotateCerts()
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if err != nil || !ok {
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t.Errorf("failed to rotate certs: %v", err)
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}
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if h.calls != 1 {
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t.Errorf("rotation metric was not called")
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}
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if h.lastValue != now.Sub(certIss).Seconds() {
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t.Errorf("rotation metric did not record the right value got: %f; want %f", h.lastValue, now.Sub(certIss).Seconds())
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}
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}
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type fakeClientFailureType int
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type fakeClientFailureType int
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const (
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const (
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