Merge remote-tracking branch 'origin/nikola-jokic-remove-integrity-hash-annotation' into nikola-jokic-revision-aware-outdated

This commit is contained in:
Nikola Jokic
2026-09-11 11:07:46 +02:00
4 changed files with 319 additions and 7 deletions
@@ -0,0 +1,145 @@
package actionsgithubcom
import (
"context"
"encoding/json"
"testing"
"github.com/actions/actions-runner-controller/apis/actions.github.com/v1alpha1"
"github.com/go-logr/logr"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
"k8s.io/apimachinery/pkg/types"
clientgoscheme "k8s.io/client-go/kubernetes/scheme"
"sigs.k8s.io/controller-runtime/pkg/client"
"sigs.k8s.io/controller-runtime/pkg/client/fake"
"sigs.k8s.io/controller-runtime/pkg/client/interceptor"
)
// TestPatchFinishedRunnerCleanupPatchIDStatusUsesOptimisticLock pins the
// resourceVersion precondition on the cleanup marker patch.
//
// The marker decides whether a shortfall below Spec.Replicas is suppressed, so a
// write that lands on the wrong patch ID re-enables the spurious scale up this
// layer exists to prevent. The helper sets the marker to whatever patch ID the
// reconcile is carrying rather than only ever advancing it, so without the lock
// the API server cannot reject a stale write, retry.RetryOnConflict never fires,
// and a reconcile serving an older patch ID can overwrite a marker recorded for
// a newer one.
//
// Asserted on the bytes the production code emits rather than on an
// independently built patch, so it cannot pass while the reconciler constructs
// its patch some other way. Reverting the option to a plain client.MergeFrom
// must fail this test.
func TestPatchFinishedRunnerCleanupPatchIDStatusUsesOptimisticLock(t *testing.T) {
scheme := runtime.NewScheme()
require.NoError(t, clientgoscheme.AddToScheme(scheme))
require.NoError(t, v1alpha1.AddToScheme(scheme))
ephemeralRunnerSet := &v1alpha1.EphemeralRunnerSet{
ObjectMeta: metav1.ObjectMeta{
Name: "test-ers",
Namespace: "default",
},
Spec: v1alpha1.EphemeralRunnerSetSpec{
PatchID: 4,
},
}
var capturedPatch []byte
c := fake.NewClientBuilder().
WithScheme(scheme).
WithObjects(ephemeralRunnerSet).
WithStatusSubresource(&v1alpha1.EphemeralRunnerSet{}).
WithInterceptorFuncs(interceptor.Funcs{
SubResourcePatch: func(ctx context.Context, clt client.Client, subResourceName string, obj client.Object, patch client.Patch, opts ...client.SubResourcePatchOption) error {
data, err := patch.Data(obj)
if err != nil {
return err
}
capturedPatch = data
return clt.Status().Patch(ctx, obj, patch, opts...)
},
}).
Build()
reconciler := &EphemeralRunnerSetReconciler{
Client: c,
APIReader: c,
Log: logr.Discard(),
Scheme: scheme,
}
key := types.NamespacedName{Namespace: ephemeralRunnerSet.Namespace, Name: ephemeralRunnerSet.Name}
require.NoError(t, reconciler.patchFinishedRunnerCleanupPatchIDStatus(context.Background(), key, 4))
require.NotEmpty(t, capturedPatch, "expected the reconciler to emit a status patch")
var emitted struct {
Metadata struct {
ResourceVersion string `json:"resourceVersion"`
} `json:"metadata"`
Status struct {
FinishedRunnerCleanupPatchID int `json:"finishedRunnerCleanupPatchID"`
} `json:"status"`
}
require.NoError(t, json.Unmarshal(capturedPatch, &emitted))
assert.NotEmpty(
t,
emitted.Metadata.ResourceVersion,
"status patch must carry a resourceVersion precondition so a stale write is rejected instead of recording the wrong patch ID, got %s",
string(capturedPatch),
)
assert.Equal(t, 4, emitted.Status.FinishedRunnerCleanupPatchID)
var updated v1alpha1.EphemeralRunnerSet
require.NoError(t, c.Get(context.Background(), key, &updated))
assert.Equal(t, 4, updated.Status.FinishedRunnerCleanupPatchID)
}
// TestPatchFinishedRunnerCleanupPatchIDStatusIsIdempotent covers the early
// return: a marker already recording this patch ID must not be rewritten, so
// repeated reconciles for one patch do not churn the status.
func TestPatchFinishedRunnerCleanupPatchIDStatusIsIdempotent(t *testing.T) {
scheme := runtime.NewScheme()
require.NoError(t, clientgoscheme.AddToScheme(scheme))
require.NoError(t, v1alpha1.AddToScheme(scheme))
ephemeralRunnerSet := &v1alpha1.EphemeralRunnerSet{
ObjectMeta: metav1.ObjectMeta{
Name: "test-ers",
Namespace: "default",
},
Status: v1alpha1.EphemeralRunnerSetStatus{
FinishedRunnerCleanupPatchID: 4,
},
}
patched := false
c := fake.NewClientBuilder().
WithScheme(scheme).
WithObjects(ephemeralRunnerSet).
WithStatusSubresource(&v1alpha1.EphemeralRunnerSet{}).
WithInterceptorFuncs(interceptor.Funcs{
SubResourcePatch: func(ctx context.Context, clt client.Client, subResourceName string, obj client.Object, patch client.Patch, opts ...client.SubResourcePatchOption) error {
patched = true
return clt.Status().Patch(ctx, obj, patch, opts...)
},
}).
Build()
reconciler := &EphemeralRunnerSetReconciler{
Client: c,
APIReader: c,
Log: logr.Discard(),
Scheme: scheme,
}
key := types.NamespacedName{Namespace: ephemeralRunnerSet.Namespace, Name: ephemeralRunnerSet.Name}
require.NoError(t, reconciler.patchFinishedRunnerCleanupPatchIDStatus(context.Background(), key, 4))
assert.False(t, patched, "recording a patch ID the marker already holds must not emit a write")
}
@@ -235,14 +235,14 @@ func (r *EphemeralRunnerSetReconciler) Reconcile(ctx context.Context, req ctrl.R
// patch ID the cleanup belongs to and return, leaving the scaling decision
// to the next reconcile, which sees the post-cleanup state.
if len(ephemeralRunnersByState.finished) > 0 {
if err := r.deleteTerminatedEphemeralRunners(ctx, ephemeralRunnersByState.finished, log); err != nil {
log.Error(err, "failed to delete terminated ephemeral runners")
return ctrl.Result{}, err
}
if err := r.patchFinishedRunnerCleanupPatchIDStatus(ctx, req.NamespacedName, ephemeralRunnerSet.Spec.PatchID); err != nil {
log.Error(err, "failed to update finished runner cleanup patch ID status")
return ctrl.Result{}, err
}
if err := r.deleteTerminatedEphemeralRunners(ctx, ephemeralRunnersByState.finished, log); err != nil {
log.Error(err, "failed to delete terminated ephemeral runners")
return ctrl.Result{}, err
}
ephemeralRunnerSet.Status.FinishedRunnerCleanupPatchID = ephemeralRunnerSet.Spec.PatchID
log.Info("Finished ephemeral runners were cleaned up, deferring scaling decision")
@@ -323,6 +323,16 @@ func (r *EphemeralRunnerSetReconciler) Reconcile(ctx context.Context, req ctrl.R
// object that was read. A cached read that still showed the field as 0 while the
// API server held a recorded marker would produce a patch with no entry for the
// field, silently leaving the stale marker in place.
//
// The patch carries an optimistic lock so that the re-fetch actually means
// something. A plain merge patch has no resourceVersion precondition, so the API
// server can never reject it as conflicting: RetryOnConflict would never fire,
// and a patch computed from a stale read could move the applied revision
// backwards, re-satisfying the spec > applied comparison above and deleting the
// idle runners all over again. With the lock, the server accepts the write only
// if the re-fetched object is still the live one, so a successful patch proves
// the monotonicity check above was evaluated against live data. A stale attempt
// conflicts and is retried or requeued instead of regressing the marker.
func (r *EphemeralRunnerSetReconciler) patchAppliedActionableRevisionStatus(ctx context.Context, key types.NamespacedName, targetAppliedRevision int64) error {
return retry.RetryOnConflict(retry.DefaultBackoff, func() error {
var latest v1alpha1.EphemeralRunnerSet
@@ -383,7 +393,7 @@ func (r *EphemeralRunnerSetReconciler) patchAppliedActionableRevisionStatus(ctx
return nil
}
return r.Status().Patch(ctx, &latest, client.MergeFrom(original))
return r.Status().Patch(ctx, &latest, client.MergeFromWithOptions(original, client.MergeFromWithOptimisticLock{}))
})
}
@@ -442,6 +452,21 @@ func (r *EphemeralRunnerSetReconciler) scaleUpServicedByFinishedRunnerCleanup(ct
// Like the applied revision above, this is written after the deletions succeed
// and re-fetches the object inside the retry, so a conflicting write is never
// resolved by replaying a status that predates the cleanup.
//
// The patch carries an optimistic lock for the same reason, and the exposure
// here is if anything worse: the check below is an equality test rather than a
// monotonicity test, so this helper is willing to move the marker to whatever
// patch ID the reconcile is carrying, including backwards. Without a
// resourceVersion precondition the API server cannot reject the write, so
// RetryOnConflict can never fire and a reconcile serving an older patch ID can
// overwrite a marker recorded for a newer one. The guard would then stop
// suppressing for the patch ID that was actually serviced, and the controller
// would create the replacement runners this layer exists to prevent.
//
// Re-fetching through the API reader narrows that window to the gap between the
// read and the patch rather than closing it, because the decision is only as
// fresh as the moment it was taken. The lock is what makes the write conditional
// on that decision still holding.
func (r *EphemeralRunnerSetReconciler) patchFinishedRunnerCleanupPatchIDStatus(ctx context.Context, key types.NamespacedName, patchID int) error {
return retry.RetryOnConflict(retry.DefaultBackoff, func() error {
var latest v1alpha1.EphemeralRunnerSet
@@ -460,7 +485,7 @@ func (r *EphemeralRunnerSetReconciler) patchFinishedRunnerCleanupPatchIDStatus(c
original := latest.DeepCopy()
latest.Status.FinishedRunnerCleanupPatchID = patchID
return r.Status().Patch(ctx, &latest, client.MergeFrom(original))
return r.Status().Patch(ctx, &latest, client.MergeFromWithOptions(original, client.MergeFromWithOptimisticLock{}))
})
}
@@ -627,7 +627,7 @@ var _ = Describe("Test EphemeralRunnerSet controller", func() {
// confirm they are not deleted
runnerList = new(v1alpha1.EphemeralRunnerList)
Eventually(
Consistently(
func() (int, error) {
err := listEphemeralRunnersAndRemoveFinalizers(ctx, k8sClient, runnerList, ephemeralRunnerSet.Namespace)
if err != nil {
@@ -0,0 +1,142 @@
package actionsgithubcom
import (
"context"
"encoding/json"
"testing"
"github.com/actions/actions-runner-controller/apis/actions.github.com/v1alpha1"
"github.com/go-logr/logr"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
"k8s.io/apimachinery/pkg/types"
clientgoscheme "k8s.io/client-go/kubernetes/scheme"
"sigs.k8s.io/controller-runtime/pkg/client"
"sigs.k8s.io/controller-runtime/pkg/client/fake"
"sigs.k8s.io/controller-runtime/pkg/client/interceptor"
)
// TestPatchAppliedActionableRevisionStatusUsesOptimisticLock pins the property
// that makes the applied revision marker monotonic: the status patch must carry
// a resourceVersion precondition.
//
// Without it the API server cannot reject the write as conflicting, so the
// surrounding retry.RetryOnConflict never fires and the freshness check inside
// it is unsound. Both the target revision and the re-fetched object come from
// the cache-backed client, so a stale reconcile can compare a stale target
// against an equally stale read, pass the check, and patch the applied revision
// backwards. That re-satisfies the spec > applied comparison in Reconcile and
// sends the controller through the idle and pending runner cleanup again.
//
// The property is asserted on the bytes the production code actually emits
// rather than on an independently constructed patch, so the test cannot pass
// while the reconciler builds its patch some other way. Reverting the patch
// option to a plain client.MergeFrom must fail this test.
func TestPatchAppliedActionableRevisionStatusUsesOptimisticLock(t *testing.T) {
scheme := runtime.NewScheme()
require.NoError(t, clientgoscheme.AddToScheme(scheme))
require.NoError(t, v1alpha1.AddToScheme(scheme))
ephemeralRunnerSet := &v1alpha1.EphemeralRunnerSet{
ObjectMeta: metav1.ObjectMeta{
Name: "test-ers",
Namespace: "default",
},
Spec: v1alpha1.EphemeralRunnerSetSpec{
ActionableRevision: 7,
},
Status: v1alpha1.EphemeralRunnerSetStatus{
AppliedActionableRevision: 2,
},
}
var capturedPatch []byte
c := fake.NewClientBuilder().
WithScheme(scheme).
WithObjects(ephemeralRunnerSet).
WithStatusSubresource(&v1alpha1.EphemeralRunnerSet{}).
WithInterceptorFuncs(interceptor.Funcs{
SubResourcePatch: func(ctx context.Context, clt client.Client, subResourceName string, obj client.Object, patch client.Patch, opts ...client.SubResourcePatchOption) error {
data, err := patch.Data(obj)
if err != nil {
return err
}
capturedPatch = data
return clt.Status().Patch(ctx, obj, patch, opts...)
},
}).
Build()
reconciler := &EphemeralRunnerSetReconciler{
Client: c,
Log: logr.Discard(),
Scheme: scheme,
}
key := types.NamespacedName{Namespace: ephemeralRunnerSet.Namespace, Name: ephemeralRunnerSet.Name}
require.NoError(t, reconciler.patchAppliedActionableRevisionStatus(context.Background(), key, 7))
require.NotEmpty(t, capturedPatch, "expected the reconciler to emit a status patch")
var emitted struct {
Metadata struct {
ResourceVersion string `json:"resourceVersion"`
} `json:"metadata"`
Status struct {
AppliedActionableRevision int64 `json:"appliedActionableRevision"`
} `json:"status"`
}
require.NoError(t, json.Unmarshal(capturedPatch, &emitted))
assert.NotEmpty(
t,
emitted.Metadata.ResourceVersion,
"status patch must carry a resourceVersion precondition so a stale write is rejected instead of moving the applied revision backwards, got %s",
string(capturedPatch),
)
assert.Equal(t, int64(7), emitted.Status.AppliedActionableRevision)
var updated v1alpha1.EphemeralRunnerSet
require.NoError(t, c.Get(context.Background(), key, &updated))
assert.Equal(t, int64(7), updated.Status.AppliedActionableRevision)
}
// TestPatchAppliedActionableRevisionStatusDoesNotMoveBackwards covers the guard
// inside the retry: a reconcile carrying an older target revision must leave a
// marker that has already advanced further alone.
func TestPatchAppliedActionableRevisionStatusDoesNotMoveBackwards(t *testing.T) {
scheme := runtime.NewScheme()
require.NoError(t, clientgoscheme.AddToScheme(scheme))
require.NoError(t, v1alpha1.AddToScheme(scheme))
ephemeralRunnerSet := &v1alpha1.EphemeralRunnerSet{
ObjectMeta: metav1.ObjectMeta{
Name: "test-ers",
Namespace: "default",
},
Status: v1alpha1.EphemeralRunnerSetStatus{
AppliedActionableRevision: 5,
},
}
c := fake.NewClientBuilder().
WithScheme(scheme).
WithObjects(ephemeralRunnerSet).
WithStatusSubresource(&v1alpha1.EphemeralRunnerSet{}).
Build()
reconciler := &EphemeralRunnerSetReconciler{
Client: c,
Log: logr.Discard(),
Scheme: scheme,
}
key := types.NamespacedName{Namespace: ephemeralRunnerSet.Namespace, Name: ephemeralRunnerSet.Name}
require.NoError(t, reconciler.patchAppliedActionableRevisionStatus(context.Background(), key, 3))
var updated v1alpha1.EphemeralRunnerSet
require.NoError(t, c.Get(context.Background(), key, &updated))
assert.Equal(t, int64(5), updated.Status.AppliedActionableRevision)
}