diff --git a/go.mod b/go.mod index 8a2177c9..71a7a50a 100644 --- a/go.mod +++ b/go.mod @@ -14,6 +14,7 @@ require ( github.com/google/go-cmp v0.7.0 github.com/imdario/mergo v0.3.16 github.com/snowflakedb/gosnowflake v1.19.1 + github.com/stretchr/testify v1.11.1 golang.org/x/sync v0.20.0 k8s.io/api v0.34.8 k8s.io/apimachinery v0.34.8 diff --git a/internal/controller/controllerconfig_controller.go b/internal/controller/controllerconfig_controller.go index 53196247..f6b1a55c 100644 --- a/internal/controller/controllerconfig_controller.go +++ b/internal/controller/controllerconfig_controller.go @@ -20,6 +20,7 @@ import ( "context" "crypto/rsa" "encoding/base64" + "errors" "fmt" "time" @@ -104,15 +105,16 @@ func (r *ControllerConfigReconciler) Reconcile(ctx context.Context, req ctrl.Req cacheDirectory = config.Spec.UnstructuredDataProcessingConfig.CacheDirectory unstructuredSecret = &corev1.Secret{} - if config.Spec.UnstructuredSecret != "" { - if err := r.Get(ctx, - types.NamespacedName{Name: config.Spec.UnstructuredSecret, Namespace: req.Namespace}, unstructuredSecret); err != nil { - logger.Error(err, fmt.Sprintf("error fetching AWS secret %s, retrying in 10 seconds ", config.Spec.UnstructuredSecret)) - return ctrl.Result{ - Requeue: true, - RequeueAfter: 10 * time.Second, - }, nil - } + if config.Spec.UnstructuredSecret == "" { + return ctrl.Result{}, errors.New("UnstructuredSecret not configured") + } + if err := r.Get(ctx, + types.NamespacedName{Name: config.Spec.UnstructuredSecret, Namespace: req.Namespace}, unstructuredSecret); err != nil { + logger.Error(err, fmt.Sprintf("error fetching AWS secret %s, retrying in 10 seconds ", config.Spec.UnstructuredSecret)) + return ctrl.Result{ + Requeue: true, + RequeueAfter: 10 * time.Second, + }, nil } doclingServeURL := config.Spec.UnstructuredDataProcessingConfig.DoclingServeURL diff --git a/internal/controller/controllerconfig_controller_test.go b/internal/controller/controllerconfig_controller_test.go new file mode 100644 index 00000000..2d80dd26 --- /dev/null +++ b/internal/controller/controllerconfig_controller_test.go @@ -0,0 +1,255 @@ +package controller + +import ( + "context" + "testing" + + operatorv1alpha1 "github.com/redhat-data-and-ai/unstructured-data-controller/api/v1alpha1" + "github.com/stretchr/testify/assert" + corev1 "k8s.io/api/core/v1" + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" + "k8s.io/apimachinery/pkg/runtime" + "k8s.io/apimachinery/pkg/types" + ctrl "sigs.k8s.io/controller-runtime" + "sigs.k8s.io/controller-runtime/pkg/client" + "sigs.k8s.io/controller-runtime/pkg/client/fake" +) + +// covering the following scenerios +// 1. calling reconcile with no-secrets (should return an error, should set the global variables like dataingestionBucket, dataStorageBucket and cacheDirectory) + +func TestControllerConfigReconcileWithoutSecret(t *testing.T) { + schema := runtime.NewScheme() + assert.NoError(t, operatorv1alpha1.AddToScheme(schema)) + assert.NoError(t, corev1.AddToScheme(schema)) + + controllerConfig := &operatorv1alpha1.ControllerConfig{ + ObjectMeta: metav1.ObjectMeta{ + Name: "test-config", + Namespace: "default", + Generation: 1, + }, + Spec: operatorv1alpha1.ControllerConfigSpec{ + UnstructuredDataProcessingConfig: operatorv1alpha1.UnstructuredDataProcessingConfigSpec{ + IngestionBucket: "data-ingestion-bucket", + DataStorageBucket: "data-storage-bucket", + CacheDirectory: "tmp/cache/", + DoclingServeURL: "http://docling:8080", + MaxConcurrentDoclingTasks: 5, + MaxConcurrentLangchainTasks: 3, + }, + }, + } + + fakeClient := fake.NewClientBuilder().WithScheme(schema).WithObjects(controllerConfig).WithStatusSubresource(controllerConfig).Build() + + reconciler := &ControllerConfigReconciler{ + Client: fakeClient, + Scheme: schema, + } + + req := ctrl.Request{ + NamespacedName: types.NamespacedName{ + Name: "test-config", + Namespace: "default", + }, + } + + ingestionBucket = "" + dataStorageBucket = "" + cacheDirectory = "" + + result, err := reconciler.Reconcile(context.Background(), req) + assert.Error(t, err, "Expected error because there is no unstructured secret found") + assert.Equal(t, "data-ingestion-bucket", ingestionBucket, "Ingestion bucket should be set") + assert.Equal(t, "data-storage-bucket", dataStorageBucket, "Storage bucket should be set") + assert.Equal(t, "tmp/cache/", cacheDirectory, "Cache directory should be set") + + t.Logf("Result: %+v", result) +} + +func TestControllerConfigReconcileWithSecrets(t *testing.T) { + schema := runtime.NewScheme() + assert.NoError(t, operatorv1alpha1.AddToScheme(schema)) + assert.NoError(t, corev1.AddToScheme(schema)) + + controllerConfig := &operatorv1alpha1.ControllerConfig{ + ObjectMeta: metav1.ObjectMeta{ + Name: "test-config", + Namespace: "default", + Generation: 1, + }, + Spec: operatorv1alpha1.ControllerConfigSpec{ + UnstructuredSecret: "unstructured-secret", + UnstructuredDataProcessingConfig: operatorv1alpha1.UnstructuredDataProcessingConfigSpec{ + IngestionBucket: "data-ingestion-bucket", + DataStorageBucket: "data-storage-bucket", + CacheDirectory: "tmp/cache/", + DoclingServeURL: "http://docling:8080", + MaxConcurrentDoclingTasks: 5, + MaxConcurrentLangchainTasks: 3, + }, + }, + } + + secret := &corev1.Secret{ + ObjectMeta: metav1.ObjectMeta{ + Name: "unstructured-secret", + Namespace: "default", + }, + Data: map[string][]byte{ + "SOURCE_AWS_REGION": []byte("us-east-1"), + "SOURCE_AWS_ACCESS_KEY_ID": []byte("fake"), + "SOURCE_AWS_SECRET_ACCESS_KEY": []byte("fake"), + "SOURCE_AWS_ENDPOINT": []byte(""), + "DESTINATION_AWS_REGION": []byte("us-east-1"), + "DESTINATION_AWS_ACCESS_KEY_ID": []byte("fake"), + "DESTINATION_AWS_SECRET_ACCESS_KEY": []byte("fake"), + "DESTINATION_AWS_ENDPOINT": []byte(""), + "FILE_STORE_AWS_REGION": []byte("us-east-1"), + "FILE_STORE_AWS_ACCESS_KEY_ID": []byte("fake"), + "FILE_STORE_AWS_SECRET_ACCESS_KEY": []byte("fake"), + "FILE_STORE_AWS_ENDPOINT": []byte(""), + "SNOWFLAKE_PRIVATE_KEY": []byte("fake-base64-encoded-key"), + }, + } + + fakeClient := fake.NewClientBuilder().WithScheme(schema).WithObjects(controllerConfig, secret).WithStatusSubresource(controllerConfig).Build() + + reconciler := &ControllerConfigReconciler{ + Client: fakeClient, + Scheme: schema, + } + + req := ctrl.Request{ + NamespacedName: types.NamespacedName{ + Name: "test-config", + Namespace: "default", + }, + } + + // fetch the secrets to verify their values + fetchedSecret := &corev1.Secret{} + err := fakeClient.Get(context.Background(), types.NamespacedName{Name: "unstructured-secret", Namespace: "default"}, fetchedSecret) + assert.NoError(t, err, "Expected no error") + assert.Equal(t, "us-east-1", string(fetchedSecret.Data["SOURCE_AWS_REGION"]), "Source AWS region should be set") + assert.Equal(t, "fake", string(fetchedSecret.Data["SOURCE_AWS_ACCESS_KEY_ID"]), "Source AWS access key ID should be set") + assert.Equal(t, "fake", string(fetchedSecret.Data["SOURCE_AWS_SECRET_ACCESS_KEY"]), "Source AWS secret access key should be set") + assert.Equal(t, "", string(fetchedSecret.Data["SOURCE_AWS_ENDPOINT"]), "Source AWS endpoint should be set") + assert.Equal(t, "us-east-1", string(fetchedSecret.Data["DESTINATION_AWS_REGION"]), "Destination AWS region should be set") + assert.Equal(t, "fake", string(fetchedSecret.Data["DESTINATION_AWS_ACCESS_KEY_ID"]), "Destination AWS access key ID should be set") + assert.Equal(t, "fake", string(fetchedSecret.Data["DESTINATION_AWS_SECRET_ACCESS_KEY"]), "Destination AWS secret access key should be set") + assert.Equal(t, "", string(fetchedSecret.Data["DESTINATION_AWS_ENDPOINT"]), "Destination AWS endpoint should be set") + assert.Equal(t, "us-east-1", string(fetchedSecret.Data["FILE_STORE_AWS_REGION"]), "File store AWS region should be set") + assert.Equal(t, "fake", string(fetchedSecret.Data["FILE_STORE_AWS_ACCESS_KEY_ID"]), "File store AWS access key ID should be set") + assert.Equal(t, "fake", string(fetchedSecret.Data["FILE_STORE_AWS_SECRET_ACCESS_KEY"]), "File store AWS secret access key should be set") + assert.Equal(t, "", string(fetchedSecret.Data["FILE_STORE_AWS_ENDPOINT"]), "File store AWS endpoint should be set") + assert.Equal(t, "fake-base64-encoded-key", string(fetchedSecret.Data["SNOWFLAKE_PRIVATE_KEY"]), "Snowflake private key should be set") + + result, err := reconciler.Reconcile(context.Background(), req) + assert.NoError(t, err, "Expected no error") + t.Logf("Result: %+v", result) + + updated := getControllerConfig(t, fakeClient, req.NamespacedName) + assert.True(t, updated.IsHealthy()) + assert.Equal(t, int64(1), updated.Status.LastAppliedGeneration) + cond := configReadyCondition(updated) + assert.NotNil(t, cond) + assert.Equal(t, metav1.ConditionTrue, cond.Status) + assert.Equal(t, "SuccessfullyReconciled", cond.Reason) + assert.Equal(t, "Config is healthy", cond.Message) +} + +func TestControllerConfigReconcileWithInvalidSSnowflakeRSAKey(t *testing.T) { + schema := runtime.NewScheme() + assert.NoError(t, operatorv1alpha1.AddToScheme(schema)) + assert.NoError(t, corev1.AddToScheme(schema)) + + controllerConfig := &operatorv1alpha1.ControllerConfig{ + ObjectMeta: metav1.ObjectMeta{ + Name: "test-config", + Namespace: "default", + Generation: 1, + }, + Spec: operatorv1alpha1.ControllerConfigSpec{ + UnstructuredSecret: "unstructured-secret", + UnstructuredDataProcessingConfig: operatorv1alpha1.UnstructuredDataProcessingConfigSpec{ + IngestionBucket: "data-ingestion-bucket", + DataStorageBucket: "data-storage-bucket", + CacheDirectory: "tmp/cache/", + DoclingServeURL: "http://docling:8080", + MaxConcurrentDoclingTasks: 5, + MaxConcurrentLangchainTasks: 3, + }, + SnowflakeConfig: &operatorv1alpha1.SnowflakeConfig{ + Account: "test-account", + User: "test-user", + Role: "test-role", + Region: "us-east-1", + Warehouse: "test-warehouse", + }, + }, + } + + secret := &corev1.Secret{ + ObjectMeta: metav1.ObjectMeta{ + Name: "unstructured-secret", + Namespace: "default", + }, + Data: map[string][]byte{ + "SOURCE_AWS_REGION": []byte("us-east-1"), + "SOURCE_AWS_ACCESS_KEY_ID": []byte("fake"), + "SOURCE_AWS_SECRET_ACCESS_KEY": []byte("fake"), + "SOURCE_AWS_ENDPOINT": []byte(""), + "DESTINATION_AWS_REGION": []byte("us-east-1"), + "DESTINATION_AWS_ACCESS_KEY_ID": []byte("fake"), + "DESTINATION_AWS_SECRET_ACCESS_KEY": []byte("fake"), + "DESTINATION_AWS_ENDPOINT": []byte(""), + "FILE_STORE_AWS_REGION": []byte("us-east-1"), + "FILE_STORE_AWS_ACCESS_KEY_ID": []byte("fake"), + "FILE_STORE_AWS_SECRET_ACCESS_KEY": []byte("fake"), + "FILE_STORE_AWS_ENDPOINT": []byte(""), + "SNOWFLAKE_PRIVATE_KEY": []byte("fake-base64-encoded-key"), + }, + } + + fakeClient := fake.NewClientBuilder().WithScheme(schema).WithObjects(controllerConfig, secret).WithStatusSubresource(controllerConfig).Build() + + reconciler := &ControllerConfigReconciler{ + Client: fakeClient, + Scheme: schema, + } + + req := ctrl.Request{ + NamespacedName: types.NamespacedName{ + Name: "test-config", + Namespace: "default", + }, + } + + result, err := reconciler.Reconcile(context.Background(), req) + assert.Error(t, err) + assert.ErrorContains(t, err, "failed to decode snowflake private key from secret unstructured-secret") + t.Logf("Result: %+v", result) + + updated := getControllerConfig(t, fakeClient, req.NamespacedName) + assert.False(t, updated.IsHealthy()) + assert.Equal(t, int64(0), updated.Status.LastAppliedGeneration) + assert.Nil(t, configReadyCondition(updated), "ConfigReady condition should not be written on early failure") +} + +// helper functions +func getControllerConfig(t *testing.T, c client.Client, nn types.NamespacedName) *operatorv1alpha1.ControllerConfig { + t.Helper() + cfg := &operatorv1alpha1.ControllerConfig{} + assert.NoError(t, c.Get(context.Background(), nn, cfg)) + return cfg +} +func configReadyCondition(cfg *operatorv1alpha1.ControllerConfig) *metav1.Condition { + for i := range cfg.Status.Conditions { + if cfg.Status.Conditions[i].Type == operatorv1alpha1.ConfigCondition { + return &cfg.Status.Conditions[i] + } + } + return nil +} diff --git a/vendor/github.com/stretchr/testify/LICENSE b/vendor/github.com/stretchr/testify/LICENSE new file mode 100644 index 00000000..4b0421cf --- /dev/null +++ b/vendor/github.com/stretchr/testify/LICENSE @@ -0,0 +1,21 @@ +MIT License + +Copyright (c) 2012-2020 Mat Ryer, Tyler Bunnell and contributors. + +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE +SOFTWARE. diff --git a/vendor/github.com/stretchr/testify/assert/assertion_compare.go b/vendor/github.com/stretchr/testify/assert/assertion_compare.go new file mode 100644 index 00000000..ffb24e8e --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertion_compare.go @@ -0,0 +1,495 @@ +package assert + +import ( + "bytes" + "fmt" + "reflect" + "time" +) + +// Deprecated: CompareType has only ever been for internal use and has accidentally been published since v1.6.0. Do not use it. +type CompareType = compareResult + +type compareResult int + +const ( + compareLess compareResult = iota - 1 + compareEqual + compareGreater +) + +var ( + intType = reflect.TypeOf(int(1)) + int8Type = reflect.TypeOf(int8(1)) + int16Type = reflect.TypeOf(int16(1)) + int32Type = reflect.TypeOf(int32(1)) + int64Type = reflect.TypeOf(int64(1)) + + uintType = reflect.TypeOf(uint(1)) + uint8Type = reflect.TypeOf(uint8(1)) + uint16Type = reflect.TypeOf(uint16(1)) + uint32Type = reflect.TypeOf(uint32(1)) + uint64Type = reflect.TypeOf(uint64(1)) + + uintptrType = reflect.TypeOf(uintptr(1)) + + float32Type = reflect.TypeOf(float32(1)) + float64Type = reflect.TypeOf(float64(1)) + + stringType = reflect.TypeOf("") + + timeType = reflect.TypeOf(time.Time{}) + bytesType = reflect.TypeOf([]byte{}) +) + +func compare(obj1, obj2 interface{}, kind reflect.Kind) (compareResult, bool) { + obj1Value := reflect.ValueOf(obj1) + obj2Value := reflect.ValueOf(obj2) + + // throughout this switch we try and avoid calling .Convert() if possible, + // as this has a pretty big performance impact + switch kind { + case reflect.Int: + { + intobj1, ok := obj1.(int) + if !ok { + intobj1 = obj1Value.Convert(intType).Interface().(int) + } + intobj2, ok := obj2.(int) + if !ok { + intobj2 = obj2Value.Convert(intType).Interface().(int) + } + if intobj1 > intobj2 { + return compareGreater, true + } + if intobj1 == intobj2 { + return compareEqual, true + } + if intobj1 < intobj2 { + return compareLess, true + } + } + case reflect.Int8: + { + int8obj1, ok := obj1.(int8) + if !ok { + int8obj1 = obj1Value.Convert(int8Type).Interface().(int8) + } + int8obj2, ok := obj2.(int8) + if !ok { + int8obj2 = obj2Value.Convert(int8Type).Interface().(int8) + } + if int8obj1 > int8obj2 { + return compareGreater, true + } + if int8obj1 == int8obj2 { + return compareEqual, true + } + if int8obj1 < int8obj2 { + return compareLess, true + } + } + case reflect.Int16: + { + int16obj1, ok := obj1.(int16) + if !ok { + int16obj1 = obj1Value.Convert(int16Type).Interface().(int16) + } + int16obj2, ok := obj2.(int16) + if !ok { + int16obj2 = obj2Value.Convert(int16Type).Interface().(int16) + } + if int16obj1 > int16obj2 { + return compareGreater, true + } + if int16obj1 == int16obj2 { + return compareEqual, true + } + if int16obj1 < int16obj2 { + return compareLess, true + } + } + case reflect.Int32: + { + int32obj1, ok := obj1.(int32) + if !ok { + int32obj1 = obj1Value.Convert(int32Type).Interface().(int32) + } + int32obj2, ok := obj2.(int32) + if !ok { + int32obj2 = obj2Value.Convert(int32Type).Interface().(int32) + } + if int32obj1 > int32obj2 { + return compareGreater, true + } + if int32obj1 == int32obj2 { + return compareEqual, true + } + if int32obj1 < int32obj2 { + return compareLess, true + } + } + case reflect.Int64: + { + int64obj1, ok := obj1.(int64) + if !ok { + int64obj1 = obj1Value.Convert(int64Type).Interface().(int64) + } + int64obj2, ok := obj2.(int64) + if !ok { + int64obj2 = obj2Value.Convert(int64Type).Interface().(int64) + } + if int64obj1 > int64obj2 { + return compareGreater, true + } + if int64obj1 == int64obj2 { + return compareEqual, true + } + if int64obj1 < int64obj2 { + return compareLess, true + } + } + case reflect.Uint: + { + uintobj1, ok := obj1.(uint) + if !ok { + uintobj1 = obj1Value.Convert(uintType).Interface().(uint) + } + uintobj2, ok := obj2.(uint) + if !ok { + uintobj2 = obj2Value.Convert(uintType).Interface().(uint) + } + if uintobj1 > uintobj2 { + return compareGreater, true + } + if uintobj1 == uintobj2 { + return compareEqual, true + } + if uintobj1 < uintobj2 { + return compareLess, true + } + } + case reflect.Uint8: + { + uint8obj1, ok := obj1.(uint8) + if !ok { + uint8obj1 = obj1Value.Convert(uint8Type).Interface().(uint8) + } + uint8obj2, ok := obj2.(uint8) + if !ok { + uint8obj2 = obj2Value.Convert(uint8Type).Interface().(uint8) + } + if uint8obj1 > uint8obj2 { + return compareGreater, true + } + if uint8obj1 == uint8obj2 { + return compareEqual, true + } + if uint8obj1 < uint8obj2 { + return compareLess, true + } + } + case reflect.Uint16: + { + uint16obj1, ok := obj1.(uint16) + if !ok { + uint16obj1 = obj1Value.Convert(uint16Type).Interface().(uint16) + } + uint16obj2, ok := obj2.(uint16) + if !ok { + uint16obj2 = obj2Value.Convert(uint16Type).Interface().(uint16) + } + if uint16obj1 > uint16obj2 { + return compareGreater, true + } + if uint16obj1 == uint16obj2 { + return compareEqual, true + } + if uint16obj1 < uint16obj2 { + return compareLess, true + } + } + case reflect.Uint32: + { + uint32obj1, ok := obj1.(uint32) + if !ok { + uint32obj1 = obj1Value.Convert(uint32Type).Interface().(uint32) + } + uint32obj2, ok := obj2.(uint32) + if !ok { + uint32obj2 = obj2Value.Convert(uint32Type).Interface().(uint32) + } + if uint32obj1 > uint32obj2 { + return compareGreater, true + } + if uint32obj1 == uint32obj2 { + return compareEqual, true + } + if uint32obj1 < uint32obj2 { + return compareLess, true + } + } + case reflect.Uint64: + { + uint64obj1, ok := obj1.(uint64) + if !ok { + uint64obj1 = obj1Value.Convert(uint64Type).Interface().(uint64) + } + uint64obj2, ok := obj2.(uint64) + if !ok { + uint64obj2 = obj2Value.Convert(uint64Type).Interface().(uint64) + } + if uint64obj1 > uint64obj2 { + return compareGreater, true + } + if uint64obj1 == uint64obj2 { + return compareEqual, true + } + if uint64obj1 < uint64obj2 { + return compareLess, true + } + } + case reflect.Float32: + { + float32obj1, ok := obj1.(float32) + if !ok { + float32obj1 = obj1Value.Convert(float32Type).Interface().(float32) + } + float32obj2, ok := obj2.(float32) + if !ok { + float32obj2 = obj2Value.Convert(float32Type).Interface().(float32) + } + if float32obj1 > float32obj2 { + return compareGreater, true + } + if float32obj1 == float32obj2 { + return compareEqual, true + } + if float32obj1 < float32obj2 { + return compareLess, true + } + } + case reflect.Float64: + { + float64obj1, ok := obj1.(float64) + if !ok { + float64obj1 = obj1Value.Convert(float64Type).Interface().(float64) + } + float64obj2, ok := obj2.(float64) + if !ok { + float64obj2 = obj2Value.Convert(float64Type).Interface().(float64) + } + if float64obj1 > float64obj2 { + return compareGreater, true + } + if float64obj1 == float64obj2 { + return compareEqual, true + } + if float64obj1 < float64obj2 { + return compareLess, true + } + } + case reflect.String: + { + stringobj1, ok := obj1.(string) + if !ok { + stringobj1 = obj1Value.Convert(stringType).Interface().(string) + } + stringobj2, ok := obj2.(string) + if !ok { + stringobj2 = obj2Value.Convert(stringType).Interface().(string) + } + if stringobj1 > stringobj2 { + return compareGreater, true + } + if stringobj1 == stringobj2 { + return compareEqual, true + } + if stringobj1 < stringobj2 { + return compareLess, true + } + } + // Check for known struct types we can check for compare results. + case reflect.Struct: + { + // All structs enter here. We're not interested in most types. + if !obj1Value.CanConvert(timeType) { + break + } + + // time.Time can be compared! + timeObj1, ok := obj1.(time.Time) + if !ok { + timeObj1 = obj1Value.Convert(timeType).Interface().(time.Time) + } + + timeObj2, ok := obj2.(time.Time) + if !ok { + timeObj2 = obj2Value.Convert(timeType).Interface().(time.Time) + } + + if timeObj1.Before(timeObj2) { + return compareLess, true + } + if timeObj1.Equal(timeObj2) { + return compareEqual, true + } + return compareGreater, true + } + case reflect.Slice: + { + // We only care about the []byte type. + if !obj1Value.CanConvert(bytesType) { + break + } + + // []byte can be compared! + bytesObj1, ok := obj1.([]byte) + if !ok { + bytesObj1 = obj1Value.Convert(bytesType).Interface().([]byte) + + } + bytesObj2, ok := obj2.([]byte) + if !ok { + bytesObj2 = obj2Value.Convert(bytesType).Interface().([]byte) + } + + return compareResult(bytes.Compare(bytesObj1, bytesObj2)), true + } + case reflect.Uintptr: + { + uintptrObj1, ok := obj1.(uintptr) + if !ok { + uintptrObj1 = obj1Value.Convert(uintptrType).Interface().(uintptr) + } + uintptrObj2, ok := obj2.(uintptr) + if !ok { + uintptrObj2 = obj2Value.Convert(uintptrType).Interface().(uintptr) + } + if uintptrObj1 > uintptrObj2 { + return compareGreater, true + } + if uintptrObj1 == uintptrObj2 { + return compareEqual, true + } + if uintptrObj1 < uintptrObj2 { + return compareLess, true + } + } + } + + return compareEqual, false +} + +// Greater asserts that the first element is greater than the second +// +// assert.Greater(t, 2, 1) +// assert.Greater(t, float64(2), float64(1)) +// assert.Greater(t, "b", "a") +func Greater(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + failMessage := fmt.Sprintf("\"%v\" is not greater than \"%v\"", e1, e2) + return compareTwoValues(t, e1, e2, []compareResult{compareGreater}, failMessage, msgAndArgs...) +} + +// GreaterOrEqual asserts that the first element is greater than or equal to the second +// +// assert.GreaterOrEqual(t, 2, 1) +// assert.GreaterOrEqual(t, 2, 2) +// assert.GreaterOrEqual(t, "b", "a") +// assert.GreaterOrEqual(t, "b", "b") +func GreaterOrEqual(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + failMessage := fmt.Sprintf("\"%v\" is not greater than or equal to \"%v\"", e1, e2) + return compareTwoValues(t, e1, e2, []compareResult{compareGreater, compareEqual}, failMessage, msgAndArgs...) +} + +// Less asserts that the first element is less than the second +// +// assert.Less(t, 1, 2) +// assert.Less(t, float64(1), float64(2)) +// assert.Less(t, "a", "b") +func Less(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + failMessage := fmt.Sprintf("\"%v\" is not less than \"%v\"", e1, e2) + return compareTwoValues(t, e1, e2, []compareResult{compareLess}, failMessage, msgAndArgs...) +} + +// LessOrEqual asserts that the first element is less than or equal to the second +// +// assert.LessOrEqual(t, 1, 2) +// assert.LessOrEqual(t, 2, 2) +// assert.LessOrEqual(t, "a", "b") +// assert.LessOrEqual(t, "b", "b") +func LessOrEqual(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + failMessage := fmt.Sprintf("\"%v\" is not less than or equal to \"%v\"", e1, e2) + return compareTwoValues(t, e1, e2, []compareResult{compareLess, compareEqual}, failMessage, msgAndArgs...) +} + +// Positive asserts that the specified element is positive +// +// assert.Positive(t, 1) +// assert.Positive(t, 1.23) +func Positive(t TestingT, e interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + zero := reflect.Zero(reflect.TypeOf(e)) + failMessage := fmt.Sprintf("\"%v\" is not positive", e) + return compareTwoValues(t, e, zero.Interface(), []compareResult{compareGreater}, failMessage, msgAndArgs...) +} + +// Negative asserts that the specified element is negative +// +// assert.Negative(t, -1) +// assert.Negative(t, -1.23) +func Negative(t TestingT, e interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + zero := reflect.Zero(reflect.TypeOf(e)) + failMessage := fmt.Sprintf("\"%v\" is not negative", e) + return compareTwoValues(t, e, zero.Interface(), []compareResult{compareLess}, failMessage, msgAndArgs...) +} + +func compareTwoValues(t TestingT, e1 interface{}, e2 interface{}, allowedComparesResults []compareResult, failMessage string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + e1Kind := reflect.ValueOf(e1).Kind() + e2Kind := reflect.ValueOf(e2).Kind() + if e1Kind != e2Kind { + return Fail(t, "Elements should be the same type", msgAndArgs...) + } + + compareResult, isComparable := compare(e1, e2, e1Kind) + if !isComparable { + return Fail(t, fmt.Sprintf(`Can not compare type "%T"`, e1), msgAndArgs...) + } + + if !containsValue(allowedComparesResults, compareResult) { + return Fail(t, failMessage, msgAndArgs...) + } + + return true +} + +func containsValue(values []compareResult, value compareResult) bool { + for _, v := range values { + if v == value { + return true + } + } + + return false +} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_format.go b/vendor/github.com/stretchr/testify/assert/assertion_format.go new file mode 100644 index 00000000..c592f6ad --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertion_format.go @@ -0,0 +1,866 @@ +// Code generated with github.com/stretchr/testify/_codegen; DO NOT EDIT. + +package assert + +import ( + http "net/http" + url "net/url" + time "time" +) + +// Conditionf uses a Comparison to assert a complex condition. +func Conditionf(t TestingT, comp Comparison, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Condition(t, comp, append([]interface{}{msg}, args...)...) +} + +// Containsf asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// assert.Containsf(t, "Hello World", "World", "error message %s", "formatted") +// assert.Containsf(t, ["Hello", "World"], "World", "error message %s", "formatted") +// assert.Containsf(t, {"Hello": "World"}, "Hello", "error message %s", "formatted") +func Containsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Contains(t, s, contains, append([]interface{}{msg}, args...)...) +} + +// DirExistsf checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func DirExistsf(t TestingT, path string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return DirExists(t, path, append([]interface{}{msg}, args...)...) +} + +// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// assert.ElementsMatchf(t, [1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") +func ElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return ElementsMatch(t, listA, listB, append([]interface{}{msg}, args...)...) +} + +// Emptyf asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// assert.Emptyf(t, obj, "error message %s", "formatted") +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func Emptyf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Empty(t, object, append([]interface{}{msg}, args...)...) +} + +// Equalf asserts that two objects are equal. +// +// assert.Equalf(t, 123, 123, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func Equalf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Equal(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// EqualErrorf asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// assert.EqualErrorf(t, err, expectedErrorString, "error message %s", "formatted") +func EqualErrorf(t TestingT, theError error, errString string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return EqualError(t, theError, errString, append([]interface{}{msg}, args...)...) +} + +// EqualExportedValuesf asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// assert.EqualExportedValuesf(t, S{1, 2}, S{1, 3}, "error message %s", "formatted") => true +// assert.EqualExportedValuesf(t, S{1, 2}, S{2, 3}, "error message %s", "formatted") => false +func EqualExportedValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return EqualExportedValues(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// EqualValuesf asserts that two objects are equal or convertible to the larger +// type and equal. +// +// assert.EqualValuesf(t, uint32(123), int32(123), "error message %s", "formatted") +func EqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return EqualValues(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// Errorf asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// assert.Errorf(t, err, "error message %s", "formatted") +func Errorf(t TestingT, err error, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Error(t, err, append([]interface{}{msg}, args...)...) +} + +// ErrorAsf asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func ErrorAsf(t TestingT, err error, target interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return ErrorAs(t, err, target, append([]interface{}{msg}, args...)...) +} + +// ErrorContainsf asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// assert.ErrorContainsf(t, err, expectedErrorSubString, "error message %s", "formatted") +func ErrorContainsf(t TestingT, theError error, contains string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return ErrorContains(t, theError, contains, append([]interface{}{msg}, args...)...) +} + +// ErrorIsf asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func ErrorIsf(t TestingT, err error, target error, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return ErrorIs(t, err, target, append([]interface{}{msg}, args...)...) +} + +// Eventuallyf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// assert.Eventuallyf(t, func() bool { return true; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func Eventuallyf(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Eventually(t, condition, waitFor, tick, append([]interface{}{msg}, args...)...) +} + +// EventuallyWithTf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// assert.EventuallyWithTf(t, func(c *assert.CollectT, "error message %s", "formatted") { +// // add assertions as needed; any assertion failure will fail the current tick +// assert.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func EventuallyWithTf(t TestingT, condition func(collect *CollectT), waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return EventuallyWithT(t, condition, waitFor, tick, append([]interface{}{msg}, args...)...) +} + +// Exactlyf asserts that two objects are equal in value and type. +// +// assert.Exactlyf(t, int32(123), int64(123), "error message %s", "formatted") +func Exactlyf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Exactly(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// Failf reports a failure through +func Failf(t TestingT, failureMessage string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, failureMessage, append([]interface{}{msg}, args...)...) +} + +// FailNowf fails test +func FailNowf(t TestingT, failureMessage string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return FailNow(t, failureMessage, append([]interface{}{msg}, args...)...) +} + +// Falsef asserts that the specified value is false. +// +// assert.Falsef(t, myBool, "error message %s", "formatted") +func Falsef(t TestingT, value bool, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return False(t, value, append([]interface{}{msg}, args...)...) +} + +// FileExistsf checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func FileExistsf(t TestingT, path string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return FileExists(t, path, append([]interface{}{msg}, args...)...) +} + +// Greaterf asserts that the first element is greater than the second +// +// assert.Greaterf(t, 2, 1, "error message %s", "formatted") +// assert.Greaterf(t, float64(2), float64(1), "error message %s", "formatted") +// assert.Greaterf(t, "b", "a", "error message %s", "formatted") +func Greaterf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Greater(t, e1, e2, append([]interface{}{msg}, args...)...) +} + +// GreaterOrEqualf asserts that the first element is greater than or equal to the second +// +// assert.GreaterOrEqualf(t, 2, 1, "error message %s", "formatted") +// assert.GreaterOrEqualf(t, 2, 2, "error message %s", "formatted") +// assert.GreaterOrEqualf(t, "b", "a", "error message %s", "formatted") +// assert.GreaterOrEqualf(t, "b", "b", "error message %s", "formatted") +func GreaterOrEqualf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return GreaterOrEqual(t, e1, e2, append([]interface{}{msg}, args...)...) +} + +// HTTPBodyContainsf asserts that a specified handler returns a +// body that contains a string. +// +// assert.HTTPBodyContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return HTTPBodyContains(t, handler, method, url, values, str, append([]interface{}{msg}, args...)...) +} + +// HTTPBodyNotContainsf asserts that a specified handler returns a +// body that does not contain a string. +// +// assert.HTTPBodyNotContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyNotContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return HTTPBodyNotContains(t, handler, method, url, values, str, append([]interface{}{msg}, args...)...) +} + +// HTTPErrorf asserts that a specified handler returns an error status code. +// +// assert.HTTPErrorf(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPErrorf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return HTTPError(t, handler, method, url, values, append([]interface{}{msg}, args...)...) +} + +// HTTPRedirectf asserts that a specified handler returns a redirect status code. +// +// assert.HTTPRedirectf(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPRedirectf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return HTTPRedirect(t, handler, method, url, values, append([]interface{}{msg}, args...)...) +} + +// HTTPStatusCodef asserts that a specified handler returns a specified status code. +// +// assert.HTTPStatusCodef(t, myHandler, "GET", "/notImplemented", nil, 501, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPStatusCodef(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return HTTPStatusCode(t, handler, method, url, values, statuscode, append([]interface{}{msg}, args...)...) +} + +// HTTPSuccessf asserts that a specified handler returns a success status code. +// +// assert.HTTPSuccessf(t, myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPSuccessf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return HTTPSuccess(t, handler, method, url, values, append([]interface{}{msg}, args...)...) +} + +// Implementsf asserts that an object is implemented by the specified interface. +// +// assert.Implementsf(t, (*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func Implementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Implements(t, interfaceObject, object, append([]interface{}{msg}, args...)...) +} + +// InDeltaf asserts that the two numerals are within delta of each other. +// +// assert.InDeltaf(t, math.Pi, 22/7.0, 0.01, "error message %s", "formatted") +func InDeltaf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return InDelta(t, expected, actual, delta, append([]interface{}{msg}, args...)...) +} + +// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func InDeltaMapValuesf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return InDeltaMapValues(t, expected, actual, delta, append([]interface{}{msg}, args...)...) +} + +// InDeltaSlicef is the same as InDelta, except it compares two slices. +func InDeltaSlicef(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return InDeltaSlice(t, expected, actual, delta, append([]interface{}{msg}, args...)...) +} + +// InEpsilonf asserts that expected and actual have a relative error less than epsilon +func InEpsilonf(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return InEpsilon(t, expected, actual, epsilon, append([]interface{}{msg}, args...)...) +} + +// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. +func InEpsilonSlicef(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return InEpsilonSlice(t, expected, actual, epsilon, append([]interface{}{msg}, args...)...) +} + +// IsDecreasingf asserts that the collection is decreasing +// +// assert.IsDecreasingf(t, []int{2, 1, 0}, "error message %s", "formatted") +// assert.IsDecreasingf(t, []float{2, 1}, "error message %s", "formatted") +// assert.IsDecreasingf(t, []string{"b", "a"}, "error message %s", "formatted") +func IsDecreasingf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return IsDecreasing(t, object, append([]interface{}{msg}, args...)...) +} + +// IsIncreasingf asserts that the collection is increasing +// +// assert.IsIncreasingf(t, []int{1, 2, 3}, "error message %s", "formatted") +// assert.IsIncreasingf(t, []float{1, 2}, "error message %s", "formatted") +// assert.IsIncreasingf(t, []string{"a", "b"}, "error message %s", "formatted") +func IsIncreasingf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return IsIncreasing(t, object, append([]interface{}{msg}, args...)...) +} + +// IsNonDecreasingf asserts that the collection is not decreasing +// +// assert.IsNonDecreasingf(t, []int{1, 1, 2}, "error message %s", "formatted") +// assert.IsNonDecreasingf(t, []float{1, 2}, "error message %s", "formatted") +// assert.IsNonDecreasingf(t, []string{"a", "b"}, "error message %s", "formatted") +func IsNonDecreasingf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return IsNonDecreasing(t, object, append([]interface{}{msg}, args...)...) +} + +// IsNonIncreasingf asserts that the collection is not increasing +// +// assert.IsNonIncreasingf(t, []int{2, 1, 1}, "error message %s", "formatted") +// assert.IsNonIncreasingf(t, []float{2, 1}, "error message %s", "formatted") +// assert.IsNonIncreasingf(t, []string{"b", "a"}, "error message %s", "formatted") +func IsNonIncreasingf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return IsNonIncreasing(t, object, append([]interface{}{msg}, args...)...) +} + +// IsNotTypef asserts that the specified objects are not of the same type. +// +// assert.IsNotTypef(t, &NotMyStruct{}, &MyStruct{}, "error message %s", "formatted") +func IsNotTypef(t TestingT, theType interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return IsNotType(t, theType, object, append([]interface{}{msg}, args...)...) +} + +// IsTypef asserts that the specified objects are of the same type. +// +// assert.IsTypef(t, &MyStruct{}, &MyStruct{}, "error message %s", "formatted") +func IsTypef(t TestingT, expectedType interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return IsType(t, expectedType, object, append([]interface{}{msg}, args...)...) +} + +// JSONEqf asserts that two JSON strings are equivalent. +// +// assert.JSONEqf(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") +func JSONEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return JSONEq(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// Lenf asserts that the specified object has specific length. +// Lenf also fails if the object has a type that len() not accept. +// +// assert.Lenf(t, mySlice, 3, "error message %s", "formatted") +func Lenf(t TestingT, object interface{}, length int, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Len(t, object, length, append([]interface{}{msg}, args...)...) +} + +// Lessf asserts that the first element is less than the second +// +// assert.Lessf(t, 1, 2, "error message %s", "formatted") +// assert.Lessf(t, float64(1), float64(2), "error message %s", "formatted") +// assert.Lessf(t, "a", "b", "error message %s", "formatted") +func Lessf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Less(t, e1, e2, append([]interface{}{msg}, args...)...) +} + +// LessOrEqualf asserts that the first element is less than or equal to the second +// +// assert.LessOrEqualf(t, 1, 2, "error message %s", "formatted") +// assert.LessOrEqualf(t, 2, 2, "error message %s", "formatted") +// assert.LessOrEqualf(t, "a", "b", "error message %s", "formatted") +// assert.LessOrEqualf(t, "b", "b", "error message %s", "formatted") +func LessOrEqualf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return LessOrEqual(t, e1, e2, append([]interface{}{msg}, args...)...) +} + +// Negativef asserts that the specified element is negative +// +// assert.Negativef(t, -1, "error message %s", "formatted") +// assert.Negativef(t, -1.23, "error message %s", "formatted") +func Negativef(t TestingT, e interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Negative(t, e, append([]interface{}{msg}, args...)...) +} + +// Neverf asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// assert.Neverf(t, func() bool { return false; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func Neverf(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Never(t, condition, waitFor, tick, append([]interface{}{msg}, args...)...) +} + +// Nilf asserts that the specified object is nil. +// +// assert.Nilf(t, err, "error message %s", "formatted") +func Nilf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Nil(t, object, append([]interface{}{msg}, args...)...) +} + +// NoDirExistsf checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func NoDirExistsf(t TestingT, path string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NoDirExists(t, path, append([]interface{}{msg}, args...)...) +} + +// NoErrorf asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if assert.NoErrorf(t, err, "error message %s", "formatted") { +// assert.Equal(t, expectedObj, actualObj) +// } +func NoErrorf(t TestingT, err error, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NoError(t, err, append([]interface{}{msg}, args...)...) +} + +// NoFileExistsf checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func NoFileExistsf(t TestingT, path string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NoFileExists(t, path, append([]interface{}{msg}, args...)...) +} + +// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// assert.NotContainsf(t, "Hello World", "Earth", "error message %s", "formatted") +// assert.NotContainsf(t, ["Hello", "World"], "Earth", "error message %s", "formatted") +// assert.NotContainsf(t, {"Hello": "World"}, "Earth", "error message %s", "formatted") +func NotContainsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotContains(t, s, contains, append([]interface{}{msg}, args...)...) +} + +// NotElementsMatchf asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// assert.NotElementsMatchf(t, [1, 1, 2, 3], [1, 1, 2, 3], "error message %s", "formatted") -> false +// +// assert.NotElementsMatchf(t, [1, 1, 2, 3], [1, 2, 3], "error message %s", "formatted") -> true +// +// assert.NotElementsMatchf(t, [1, 2, 3], [1, 2, 4], "error message %s", "formatted") -> true +func NotElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotElementsMatch(t, listA, listB, append([]interface{}{msg}, args...)...) +} + +// NotEmptyf asserts that the specified object is NOT [Empty]. +// +// if assert.NotEmptyf(t, obj, "error message %s", "formatted") { +// assert.Equal(t, "two", obj[1]) +// } +func NotEmptyf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotEmpty(t, object, append([]interface{}{msg}, args...)...) +} + +// NotEqualf asserts that the specified values are NOT equal. +// +// assert.NotEqualf(t, obj1, obj2, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func NotEqualf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotEqual(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// NotEqualValuesf asserts that two objects are not equal even when converted to the same type +// +// assert.NotEqualValuesf(t, obj1, obj2, "error message %s", "formatted") +func NotEqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotEqualValues(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// NotErrorAsf asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func NotErrorAsf(t TestingT, err error, target interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotErrorAs(t, err, target, append([]interface{}{msg}, args...)...) +} + +// NotErrorIsf asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func NotErrorIsf(t TestingT, err error, target error, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotErrorIs(t, err, target, append([]interface{}{msg}, args...)...) +} + +// NotImplementsf asserts that an object does not implement the specified interface. +// +// assert.NotImplementsf(t, (*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func NotImplementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotImplements(t, interfaceObject, object, append([]interface{}{msg}, args...)...) +} + +// NotNilf asserts that the specified object is not nil. +// +// assert.NotNilf(t, err, "error message %s", "formatted") +func NotNilf(t TestingT, object interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotNil(t, object, append([]interface{}{msg}, args...)...) +} + +// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// assert.NotPanicsf(t, func(){ RemainCalm() }, "error message %s", "formatted") +func NotPanicsf(t TestingT, f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotPanics(t, f, append([]interface{}{msg}, args...)...) +} + +// NotRegexpf asserts that a specified regexp does not match a string. +// +// assert.NotRegexpf(t, regexp.MustCompile("starts"), "it's starting", "error message %s", "formatted") +// assert.NotRegexpf(t, "^start", "it's not starting", "error message %s", "formatted") +func NotRegexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotRegexp(t, rx, str, append([]interface{}{msg}, args...)...) +} + +// NotSamef asserts that two pointers do not reference the same object. +// +// assert.NotSamef(t, ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func NotSamef(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotSame(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// NotSubsetf asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// assert.NotSubsetf(t, [1, 3, 4], [1, 2], "error message %s", "formatted") +// assert.NotSubsetf(t, {"x": 1, "y": 2}, {"z": 3}, "error message %s", "formatted") +// assert.NotSubsetf(t, [1, 3, 4], {1: "one", 2: "two"}, "error message %s", "formatted") +// assert.NotSubsetf(t, {"x": 1, "y": 2}, ["z"], "error message %s", "formatted") +func NotSubsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotSubset(t, list, subset, append([]interface{}{msg}, args...)...) +} + +// NotZerof asserts that i is not the zero value for its type. +func NotZerof(t TestingT, i interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return NotZero(t, i, append([]interface{}{msg}, args...)...) +} + +// Panicsf asserts that the code inside the specified PanicTestFunc panics. +// +// assert.Panicsf(t, func(){ GoCrazy() }, "error message %s", "formatted") +func Panicsf(t TestingT, f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Panics(t, f, append([]interface{}{msg}, args...)...) +} + +// PanicsWithErrorf asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// assert.PanicsWithErrorf(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func PanicsWithErrorf(t TestingT, errString string, f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return PanicsWithError(t, errString, f, append([]interface{}{msg}, args...)...) +} + +// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// assert.PanicsWithValuef(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func PanicsWithValuef(t TestingT, expected interface{}, f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return PanicsWithValue(t, expected, f, append([]interface{}{msg}, args...)...) +} + +// Positivef asserts that the specified element is positive +// +// assert.Positivef(t, 1, "error message %s", "formatted") +// assert.Positivef(t, 1.23, "error message %s", "formatted") +func Positivef(t TestingT, e interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Positive(t, e, append([]interface{}{msg}, args...)...) +} + +// Regexpf asserts that a specified regexp matches a string. +// +// assert.Regexpf(t, regexp.MustCompile("start"), "it's starting", "error message %s", "formatted") +// assert.Regexpf(t, "start...$", "it's not starting", "error message %s", "formatted") +func Regexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Regexp(t, rx, str, append([]interface{}{msg}, args...)...) +} + +// Samef asserts that two pointers reference the same object. +// +// assert.Samef(t, ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func Samef(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Same(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// Subsetf asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// assert.Subsetf(t, [1, 2, 3], [1, 2], "error message %s", "formatted") +// assert.Subsetf(t, {"x": 1, "y": 2}, {"x": 1}, "error message %s", "formatted") +// assert.Subsetf(t, [1, 2, 3], {1: "one", 2: "two"}, "error message %s", "formatted") +// assert.Subsetf(t, {"x": 1, "y": 2}, ["x"], "error message %s", "formatted") +func Subsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Subset(t, list, subset, append([]interface{}{msg}, args...)...) +} + +// Truef asserts that the specified value is true. +// +// assert.Truef(t, myBool, "error message %s", "formatted") +func Truef(t TestingT, value bool, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return True(t, value, append([]interface{}{msg}, args...)...) +} + +// WithinDurationf asserts that the two times are within duration delta of each other. +// +// assert.WithinDurationf(t, time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") +func WithinDurationf(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return WithinDuration(t, expected, actual, delta, append([]interface{}{msg}, args...)...) +} + +// WithinRangef asserts that a time is within a time range (inclusive). +// +// assert.WithinRangef(t, time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second), "error message %s", "formatted") +func WithinRangef(t TestingT, actual time.Time, start time.Time, end time.Time, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return WithinRange(t, actual, start, end, append([]interface{}{msg}, args...)...) +} + +// YAMLEqf asserts that two YAML strings are equivalent. +func YAMLEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return YAMLEq(t, expected, actual, append([]interface{}{msg}, args...)...) +} + +// Zerof asserts that i is the zero value for its type. +func Zerof(t TestingT, i interface{}, msg string, args ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Zero(t, i, append([]interface{}{msg}, args...)...) +} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_format.go.tmpl b/vendor/github.com/stretchr/testify/assert/assertion_format.go.tmpl new file mode 100644 index 00000000..d2bb0b81 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertion_format.go.tmpl @@ -0,0 +1,5 @@ +{{.CommentFormat}} +func {{.DocInfo.Name}}f(t TestingT, {{.ParamsFormat}}) bool { + if h, ok := t.(tHelper); ok { h.Helper() } + return {{.DocInfo.Name}}(t, {{.ForwardedParamsFormat}}) +} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_forward.go b/vendor/github.com/stretchr/testify/assert/assertion_forward.go new file mode 100644 index 00000000..58db9284 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertion_forward.go @@ -0,0 +1,1723 @@ +// Code generated with github.com/stretchr/testify/_codegen; DO NOT EDIT. + +package assert + +import ( + http "net/http" + url "net/url" + time "time" +) + +// Condition uses a Comparison to assert a complex condition. +func (a *Assertions) Condition(comp Comparison, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Condition(a.t, comp, msgAndArgs...) +} + +// Conditionf uses a Comparison to assert a complex condition. +func (a *Assertions) Conditionf(comp Comparison, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Conditionf(a.t, comp, msg, args...) +} + +// Contains asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// a.Contains("Hello World", "World") +// a.Contains(["Hello", "World"], "World") +// a.Contains({"Hello": "World"}, "Hello") +func (a *Assertions) Contains(s interface{}, contains interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Contains(a.t, s, contains, msgAndArgs...) +} + +// Containsf asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// a.Containsf("Hello World", "World", "error message %s", "formatted") +// a.Containsf(["Hello", "World"], "World", "error message %s", "formatted") +// a.Containsf({"Hello": "World"}, "Hello", "error message %s", "formatted") +func (a *Assertions) Containsf(s interface{}, contains interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Containsf(a.t, s, contains, msg, args...) +} + +// DirExists checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func (a *Assertions) DirExists(path string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return DirExists(a.t, path, msgAndArgs...) +} + +// DirExistsf checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func (a *Assertions) DirExistsf(path string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return DirExistsf(a.t, path, msg, args...) +} + +// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// a.ElementsMatch([1, 3, 2, 3], [1, 3, 3, 2]) +func (a *Assertions) ElementsMatch(listA interface{}, listB interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ElementsMatch(a.t, listA, listB, msgAndArgs...) +} + +// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// a.ElementsMatchf([1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") +func (a *Assertions) ElementsMatchf(listA interface{}, listB interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ElementsMatchf(a.t, listA, listB, msg, args...) +} + +// Empty asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// a.Empty(obj) +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func (a *Assertions) Empty(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Empty(a.t, object, msgAndArgs...) +} + +// Emptyf asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// a.Emptyf(obj, "error message %s", "formatted") +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func (a *Assertions) Emptyf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Emptyf(a.t, object, msg, args...) +} + +// Equal asserts that two objects are equal. +// +// a.Equal(123, 123) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func (a *Assertions) Equal(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Equal(a.t, expected, actual, msgAndArgs...) +} + +// EqualError asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// a.EqualError(err, expectedErrorString) +func (a *Assertions) EqualError(theError error, errString string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EqualError(a.t, theError, errString, msgAndArgs...) +} + +// EqualErrorf asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// a.EqualErrorf(err, expectedErrorString, "error message %s", "formatted") +func (a *Assertions) EqualErrorf(theError error, errString string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EqualErrorf(a.t, theError, errString, msg, args...) +} + +// EqualExportedValues asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// a.EqualExportedValues(S{1, 2}, S{1, 3}) => true +// a.EqualExportedValues(S{1, 2}, S{2, 3}) => false +func (a *Assertions) EqualExportedValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EqualExportedValues(a.t, expected, actual, msgAndArgs...) +} + +// EqualExportedValuesf asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// a.EqualExportedValuesf(S{1, 2}, S{1, 3}, "error message %s", "formatted") => true +// a.EqualExportedValuesf(S{1, 2}, S{2, 3}, "error message %s", "formatted") => false +func (a *Assertions) EqualExportedValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EqualExportedValuesf(a.t, expected, actual, msg, args...) +} + +// EqualValues asserts that two objects are equal or convertible to the larger +// type and equal. +// +// a.EqualValues(uint32(123), int32(123)) +func (a *Assertions) EqualValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EqualValues(a.t, expected, actual, msgAndArgs...) +} + +// EqualValuesf asserts that two objects are equal or convertible to the larger +// type and equal. +// +// a.EqualValuesf(uint32(123), int32(123), "error message %s", "formatted") +func (a *Assertions) EqualValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EqualValuesf(a.t, expected, actual, msg, args...) +} + +// Equalf asserts that two objects are equal. +// +// a.Equalf(123, 123, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func (a *Assertions) Equalf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Equalf(a.t, expected, actual, msg, args...) +} + +// Error asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// a.Error(err) +func (a *Assertions) Error(err error, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Error(a.t, err, msgAndArgs...) +} + +// ErrorAs asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func (a *Assertions) ErrorAs(err error, target interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ErrorAs(a.t, err, target, msgAndArgs...) +} + +// ErrorAsf asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func (a *Assertions) ErrorAsf(err error, target interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ErrorAsf(a.t, err, target, msg, args...) +} + +// ErrorContains asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// a.ErrorContains(err, expectedErrorSubString) +func (a *Assertions) ErrorContains(theError error, contains string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ErrorContains(a.t, theError, contains, msgAndArgs...) +} + +// ErrorContainsf asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// a.ErrorContainsf(err, expectedErrorSubString, "error message %s", "formatted") +func (a *Assertions) ErrorContainsf(theError error, contains string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ErrorContainsf(a.t, theError, contains, msg, args...) +} + +// ErrorIs asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) ErrorIs(err error, target error, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ErrorIs(a.t, err, target, msgAndArgs...) +} + +// ErrorIsf asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) ErrorIsf(err error, target error, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return ErrorIsf(a.t, err, target, msg, args...) +} + +// Errorf asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// a.Errorf(err, "error message %s", "formatted") +func (a *Assertions) Errorf(err error, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Errorf(a.t, err, msg, args...) +} + +// Eventually asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// a.Eventually(func() bool { return true; }, time.Second, 10*time.Millisecond) +func (a *Assertions) Eventually(condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Eventually(a.t, condition, waitFor, tick, msgAndArgs...) +} + +// EventuallyWithT asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// a.EventuallyWithT(func(c *assert.CollectT) { +// // add assertions as needed; any assertion failure will fail the current tick +// assert.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func (a *Assertions) EventuallyWithT(condition func(collect *CollectT), waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EventuallyWithT(a.t, condition, waitFor, tick, msgAndArgs...) +} + +// EventuallyWithTf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// a.EventuallyWithTf(func(c *assert.CollectT, "error message %s", "formatted") { +// // add assertions as needed; any assertion failure will fail the current tick +// assert.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func (a *Assertions) EventuallyWithTf(condition func(collect *CollectT), waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return EventuallyWithTf(a.t, condition, waitFor, tick, msg, args...) +} + +// Eventuallyf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// a.Eventuallyf(func() bool { return true; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func (a *Assertions) Eventuallyf(condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Eventuallyf(a.t, condition, waitFor, tick, msg, args...) +} + +// Exactly asserts that two objects are equal in value and type. +// +// a.Exactly(int32(123), int64(123)) +func (a *Assertions) Exactly(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Exactly(a.t, expected, actual, msgAndArgs...) +} + +// Exactlyf asserts that two objects are equal in value and type. +// +// a.Exactlyf(int32(123), int64(123), "error message %s", "formatted") +func (a *Assertions) Exactlyf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Exactlyf(a.t, expected, actual, msg, args...) +} + +// Fail reports a failure through +func (a *Assertions) Fail(failureMessage string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Fail(a.t, failureMessage, msgAndArgs...) +} + +// FailNow fails test +func (a *Assertions) FailNow(failureMessage string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return FailNow(a.t, failureMessage, msgAndArgs...) +} + +// FailNowf fails test +func (a *Assertions) FailNowf(failureMessage string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return FailNowf(a.t, failureMessage, msg, args...) +} + +// Failf reports a failure through +func (a *Assertions) Failf(failureMessage string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Failf(a.t, failureMessage, msg, args...) +} + +// False asserts that the specified value is false. +// +// a.False(myBool) +func (a *Assertions) False(value bool, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return False(a.t, value, msgAndArgs...) +} + +// Falsef asserts that the specified value is false. +// +// a.Falsef(myBool, "error message %s", "formatted") +func (a *Assertions) Falsef(value bool, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Falsef(a.t, value, msg, args...) +} + +// FileExists checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func (a *Assertions) FileExists(path string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return FileExists(a.t, path, msgAndArgs...) +} + +// FileExistsf checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func (a *Assertions) FileExistsf(path string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return FileExistsf(a.t, path, msg, args...) +} + +// Greater asserts that the first element is greater than the second +// +// a.Greater(2, 1) +// a.Greater(float64(2), float64(1)) +// a.Greater("b", "a") +func (a *Assertions) Greater(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Greater(a.t, e1, e2, msgAndArgs...) +} + +// GreaterOrEqual asserts that the first element is greater than or equal to the second +// +// a.GreaterOrEqual(2, 1) +// a.GreaterOrEqual(2, 2) +// a.GreaterOrEqual("b", "a") +// a.GreaterOrEqual("b", "b") +func (a *Assertions) GreaterOrEqual(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return GreaterOrEqual(a.t, e1, e2, msgAndArgs...) +} + +// GreaterOrEqualf asserts that the first element is greater than or equal to the second +// +// a.GreaterOrEqualf(2, 1, "error message %s", "formatted") +// a.GreaterOrEqualf(2, 2, "error message %s", "formatted") +// a.GreaterOrEqualf("b", "a", "error message %s", "formatted") +// a.GreaterOrEqualf("b", "b", "error message %s", "formatted") +func (a *Assertions) GreaterOrEqualf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return GreaterOrEqualf(a.t, e1, e2, msg, args...) +} + +// Greaterf asserts that the first element is greater than the second +// +// a.Greaterf(2, 1, "error message %s", "formatted") +// a.Greaterf(float64(2), float64(1), "error message %s", "formatted") +// a.Greaterf("b", "a", "error message %s", "formatted") +func (a *Assertions) Greaterf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Greaterf(a.t, e1, e2, msg, args...) +} + +// HTTPBodyContains asserts that a specified handler returns a +// body that contains a string. +// +// a.HTTPBodyContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPBodyContains(a.t, handler, method, url, values, str, msgAndArgs...) +} + +// HTTPBodyContainsf asserts that a specified handler returns a +// body that contains a string. +// +// a.HTTPBodyContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPBodyContainsf(a.t, handler, method, url, values, str, msg, args...) +} + +// HTTPBodyNotContains asserts that a specified handler returns a +// body that does not contain a string. +// +// a.HTTPBodyNotContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyNotContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPBodyNotContains(a.t, handler, method, url, values, str, msgAndArgs...) +} + +// HTTPBodyNotContainsf asserts that a specified handler returns a +// body that does not contain a string. +// +// a.HTTPBodyNotContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyNotContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPBodyNotContainsf(a.t, handler, method, url, values, str, msg, args...) +} + +// HTTPError asserts that a specified handler returns an error status code. +// +// a.HTTPError(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPError(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPError(a.t, handler, method, url, values, msgAndArgs...) +} + +// HTTPErrorf asserts that a specified handler returns an error status code. +// +// a.HTTPErrorf(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPErrorf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPErrorf(a.t, handler, method, url, values, msg, args...) +} + +// HTTPRedirect asserts that a specified handler returns a redirect status code. +// +// a.HTTPRedirect(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPRedirect(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPRedirect(a.t, handler, method, url, values, msgAndArgs...) +} + +// HTTPRedirectf asserts that a specified handler returns a redirect status code. +// +// a.HTTPRedirectf(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPRedirectf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPRedirectf(a.t, handler, method, url, values, msg, args...) +} + +// HTTPStatusCode asserts that a specified handler returns a specified status code. +// +// a.HTTPStatusCode(myHandler, "GET", "/notImplemented", nil, 501) +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPStatusCode(handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPStatusCode(a.t, handler, method, url, values, statuscode, msgAndArgs...) +} + +// HTTPStatusCodef asserts that a specified handler returns a specified status code. +// +// a.HTTPStatusCodef(myHandler, "GET", "/notImplemented", nil, 501, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPStatusCodef(handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPStatusCodef(a.t, handler, method, url, values, statuscode, msg, args...) +} + +// HTTPSuccess asserts that a specified handler returns a success status code. +// +// a.HTTPSuccess(myHandler, "POST", "http://www.google.com", nil) +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPSuccess(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPSuccess(a.t, handler, method, url, values, msgAndArgs...) +} + +// HTTPSuccessf asserts that a specified handler returns a success status code. +// +// a.HTTPSuccessf(myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPSuccessf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return HTTPSuccessf(a.t, handler, method, url, values, msg, args...) +} + +// Implements asserts that an object is implemented by the specified interface. +// +// a.Implements((*MyInterface)(nil), new(MyObject)) +func (a *Assertions) Implements(interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Implements(a.t, interfaceObject, object, msgAndArgs...) +} + +// Implementsf asserts that an object is implemented by the specified interface. +// +// a.Implementsf((*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func (a *Assertions) Implementsf(interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Implementsf(a.t, interfaceObject, object, msg, args...) +} + +// InDelta asserts that the two numerals are within delta of each other. +// +// a.InDelta(math.Pi, 22/7.0, 0.01) +func (a *Assertions) InDelta(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InDelta(a.t, expected, actual, delta, msgAndArgs...) +} + +// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func (a *Assertions) InDeltaMapValues(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InDeltaMapValues(a.t, expected, actual, delta, msgAndArgs...) +} + +// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func (a *Assertions) InDeltaMapValuesf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InDeltaMapValuesf(a.t, expected, actual, delta, msg, args...) +} + +// InDeltaSlice is the same as InDelta, except it compares two slices. +func (a *Assertions) InDeltaSlice(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InDeltaSlice(a.t, expected, actual, delta, msgAndArgs...) +} + +// InDeltaSlicef is the same as InDelta, except it compares two slices. +func (a *Assertions) InDeltaSlicef(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InDeltaSlicef(a.t, expected, actual, delta, msg, args...) +} + +// InDeltaf asserts that the two numerals are within delta of each other. +// +// a.InDeltaf(math.Pi, 22/7.0, 0.01, "error message %s", "formatted") +func (a *Assertions) InDeltaf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InDeltaf(a.t, expected, actual, delta, msg, args...) +} + +// InEpsilon asserts that expected and actual have a relative error less than epsilon +func (a *Assertions) InEpsilon(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InEpsilon(a.t, expected, actual, epsilon, msgAndArgs...) +} + +// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. +func (a *Assertions) InEpsilonSlice(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InEpsilonSlice(a.t, expected, actual, epsilon, msgAndArgs...) +} + +// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. +func (a *Assertions) InEpsilonSlicef(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InEpsilonSlicef(a.t, expected, actual, epsilon, msg, args...) +} + +// InEpsilonf asserts that expected and actual have a relative error less than epsilon +func (a *Assertions) InEpsilonf(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return InEpsilonf(a.t, expected, actual, epsilon, msg, args...) +} + +// IsDecreasing asserts that the collection is decreasing +// +// a.IsDecreasing([]int{2, 1, 0}) +// a.IsDecreasing([]float{2, 1}) +// a.IsDecreasing([]string{"b", "a"}) +func (a *Assertions) IsDecreasing(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsDecreasing(a.t, object, msgAndArgs...) +} + +// IsDecreasingf asserts that the collection is decreasing +// +// a.IsDecreasingf([]int{2, 1, 0}, "error message %s", "formatted") +// a.IsDecreasingf([]float{2, 1}, "error message %s", "formatted") +// a.IsDecreasingf([]string{"b", "a"}, "error message %s", "formatted") +func (a *Assertions) IsDecreasingf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsDecreasingf(a.t, object, msg, args...) +} + +// IsIncreasing asserts that the collection is increasing +// +// a.IsIncreasing([]int{1, 2, 3}) +// a.IsIncreasing([]float{1, 2}) +// a.IsIncreasing([]string{"a", "b"}) +func (a *Assertions) IsIncreasing(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsIncreasing(a.t, object, msgAndArgs...) +} + +// IsIncreasingf asserts that the collection is increasing +// +// a.IsIncreasingf([]int{1, 2, 3}, "error message %s", "formatted") +// a.IsIncreasingf([]float{1, 2}, "error message %s", "formatted") +// a.IsIncreasingf([]string{"a", "b"}, "error message %s", "formatted") +func (a *Assertions) IsIncreasingf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsIncreasingf(a.t, object, msg, args...) +} + +// IsNonDecreasing asserts that the collection is not decreasing +// +// a.IsNonDecreasing([]int{1, 1, 2}) +// a.IsNonDecreasing([]float{1, 2}) +// a.IsNonDecreasing([]string{"a", "b"}) +func (a *Assertions) IsNonDecreasing(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsNonDecreasing(a.t, object, msgAndArgs...) +} + +// IsNonDecreasingf asserts that the collection is not decreasing +// +// a.IsNonDecreasingf([]int{1, 1, 2}, "error message %s", "formatted") +// a.IsNonDecreasingf([]float{1, 2}, "error message %s", "formatted") +// a.IsNonDecreasingf([]string{"a", "b"}, "error message %s", "formatted") +func (a *Assertions) IsNonDecreasingf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsNonDecreasingf(a.t, object, msg, args...) +} + +// IsNonIncreasing asserts that the collection is not increasing +// +// a.IsNonIncreasing([]int{2, 1, 1}) +// a.IsNonIncreasing([]float{2, 1}) +// a.IsNonIncreasing([]string{"b", "a"}) +func (a *Assertions) IsNonIncreasing(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsNonIncreasing(a.t, object, msgAndArgs...) +} + +// IsNonIncreasingf asserts that the collection is not increasing +// +// a.IsNonIncreasingf([]int{2, 1, 1}, "error message %s", "formatted") +// a.IsNonIncreasingf([]float{2, 1}, "error message %s", "formatted") +// a.IsNonIncreasingf([]string{"b", "a"}, "error message %s", "formatted") +func (a *Assertions) IsNonIncreasingf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsNonIncreasingf(a.t, object, msg, args...) +} + +// IsNotType asserts that the specified objects are not of the same type. +// +// a.IsNotType(&NotMyStruct{}, &MyStruct{}) +func (a *Assertions) IsNotType(theType interface{}, object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsNotType(a.t, theType, object, msgAndArgs...) +} + +// IsNotTypef asserts that the specified objects are not of the same type. +// +// a.IsNotTypef(&NotMyStruct{}, &MyStruct{}, "error message %s", "formatted") +func (a *Assertions) IsNotTypef(theType interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsNotTypef(a.t, theType, object, msg, args...) +} + +// IsType asserts that the specified objects are of the same type. +// +// a.IsType(&MyStruct{}, &MyStruct{}) +func (a *Assertions) IsType(expectedType interface{}, object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsType(a.t, expectedType, object, msgAndArgs...) +} + +// IsTypef asserts that the specified objects are of the same type. +// +// a.IsTypef(&MyStruct{}, &MyStruct{}, "error message %s", "formatted") +func (a *Assertions) IsTypef(expectedType interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return IsTypef(a.t, expectedType, object, msg, args...) +} + +// JSONEq asserts that two JSON strings are equivalent. +// +// a.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) +func (a *Assertions) JSONEq(expected string, actual string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return JSONEq(a.t, expected, actual, msgAndArgs...) +} + +// JSONEqf asserts that two JSON strings are equivalent. +// +// a.JSONEqf(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") +func (a *Assertions) JSONEqf(expected string, actual string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return JSONEqf(a.t, expected, actual, msg, args...) +} + +// Len asserts that the specified object has specific length. +// Len also fails if the object has a type that len() not accept. +// +// a.Len(mySlice, 3) +func (a *Assertions) Len(object interface{}, length int, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Len(a.t, object, length, msgAndArgs...) +} + +// Lenf asserts that the specified object has specific length. +// Lenf also fails if the object has a type that len() not accept. +// +// a.Lenf(mySlice, 3, "error message %s", "formatted") +func (a *Assertions) Lenf(object interface{}, length int, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Lenf(a.t, object, length, msg, args...) +} + +// Less asserts that the first element is less than the second +// +// a.Less(1, 2) +// a.Less(float64(1), float64(2)) +// a.Less("a", "b") +func (a *Assertions) Less(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Less(a.t, e1, e2, msgAndArgs...) +} + +// LessOrEqual asserts that the first element is less than or equal to the second +// +// a.LessOrEqual(1, 2) +// a.LessOrEqual(2, 2) +// a.LessOrEqual("a", "b") +// a.LessOrEqual("b", "b") +func (a *Assertions) LessOrEqual(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return LessOrEqual(a.t, e1, e2, msgAndArgs...) +} + +// LessOrEqualf asserts that the first element is less than or equal to the second +// +// a.LessOrEqualf(1, 2, "error message %s", "formatted") +// a.LessOrEqualf(2, 2, "error message %s", "formatted") +// a.LessOrEqualf("a", "b", "error message %s", "formatted") +// a.LessOrEqualf("b", "b", "error message %s", "formatted") +func (a *Assertions) LessOrEqualf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return LessOrEqualf(a.t, e1, e2, msg, args...) +} + +// Lessf asserts that the first element is less than the second +// +// a.Lessf(1, 2, "error message %s", "formatted") +// a.Lessf(float64(1), float64(2), "error message %s", "formatted") +// a.Lessf("a", "b", "error message %s", "formatted") +func (a *Assertions) Lessf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Lessf(a.t, e1, e2, msg, args...) +} + +// Negative asserts that the specified element is negative +// +// a.Negative(-1) +// a.Negative(-1.23) +func (a *Assertions) Negative(e interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Negative(a.t, e, msgAndArgs...) +} + +// Negativef asserts that the specified element is negative +// +// a.Negativef(-1, "error message %s", "formatted") +// a.Negativef(-1.23, "error message %s", "formatted") +func (a *Assertions) Negativef(e interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Negativef(a.t, e, msg, args...) +} + +// Never asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// a.Never(func() bool { return false; }, time.Second, 10*time.Millisecond) +func (a *Assertions) Never(condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Never(a.t, condition, waitFor, tick, msgAndArgs...) +} + +// Neverf asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// a.Neverf(func() bool { return false; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func (a *Assertions) Neverf(condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Neverf(a.t, condition, waitFor, tick, msg, args...) +} + +// Nil asserts that the specified object is nil. +// +// a.Nil(err) +func (a *Assertions) Nil(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Nil(a.t, object, msgAndArgs...) +} + +// Nilf asserts that the specified object is nil. +// +// a.Nilf(err, "error message %s", "formatted") +func (a *Assertions) Nilf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Nilf(a.t, object, msg, args...) +} + +// NoDirExists checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func (a *Assertions) NoDirExists(path string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NoDirExists(a.t, path, msgAndArgs...) +} + +// NoDirExistsf checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func (a *Assertions) NoDirExistsf(path string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NoDirExistsf(a.t, path, msg, args...) +} + +// NoError asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if a.NoError(err) { +// assert.Equal(t, expectedObj, actualObj) +// } +func (a *Assertions) NoError(err error, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NoError(a.t, err, msgAndArgs...) +} + +// NoErrorf asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if a.NoErrorf(err, "error message %s", "formatted") { +// assert.Equal(t, expectedObj, actualObj) +// } +func (a *Assertions) NoErrorf(err error, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NoErrorf(a.t, err, msg, args...) +} + +// NoFileExists checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func (a *Assertions) NoFileExists(path string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NoFileExists(a.t, path, msgAndArgs...) +} + +// NoFileExistsf checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func (a *Assertions) NoFileExistsf(path string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NoFileExistsf(a.t, path, msg, args...) +} + +// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// a.NotContains("Hello World", "Earth") +// a.NotContains(["Hello", "World"], "Earth") +// a.NotContains({"Hello": "World"}, "Earth") +func (a *Assertions) NotContains(s interface{}, contains interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotContains(a.t, s, contains, msgAndArgs...) +} + +// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// a.NotContainsf("Hello World", "Earth", "error message %s", "formatted") +// a.NotContainsf(["Hello", "World"], "Earth", "error message %s", "formatted") +// a.NotContainsf({"Hello": "World"}, "Earth", "error message %s", "formatted") +func (a *Assertions) NotContainsf(s interface{}, contains interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotContainsf(a.t, s, contains, msg, args...) +} + +// NotElementsMatch asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// a.NotElementsMatch([1, 1, 2, 3], [1, 1, 2, 3]) -> false +// +// a.NotElementsMatch([1, 1, 2, 3], [1, 2, 3]) -> true +// +// a.NotElementsMatch([1, 2, 3], [1, 2, 4]) -> true +func (a *Assertions) NotElementsMatch(listA interface{}, listB interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotElementsMatch(a.t, listA, listB, msgAndArgs...) +} + +// NotElementsMatchf asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// a.NotElementsMatchf([1, 1, 2, 3], [1, 1, 2, 3], "error message %s", "formatted") -> false +// +// a.NotElementsMatchf([1, 1, 2, 3], [1, 2, 3], "error message %s", "formatted") -> true +// +// a.NotElementsMatchf([1, 2, 3], [1, 2, 4], "error message %s", "formatted") -> true +func (a *Assertions) NotElementsMatchf(listA interface{}, listB interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotElementsMatchf(a.t, listA, listB, msg, args...) +} + +// NotEmpty asserts that the specified object is NOT [Empty]. +// +// if a.NotEmpty(obj) { +// assert.Equal(t, "two", obj[1]) +// } +func (a *Assertions) NotEmpty(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotEmpty(a.t, object, msgAndArgs...) +} + +// NotEmptyf asserts that the specified object is NOT [Empty]. +// +// if a.NotEmptyf(obj, "error message %s", "formatted") { +// assert.Equal(t, "two", obj[1]) +// } +func (a *Assertions) NotEmptyf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotEmptyf(a.t, object, msg, args...) +} + +// NotEqual asserts that the specified values are NOT equal. +// +// a.NotEqual(obj1, obj2) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func (a *Assertions) NotEqual(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotEqual(a.t, expected, actual, msgAndArgs...) +} + +// NotEqualValues asserts that two objects are not equal even when converted to the same type +// +// a.NotEqualValues(obj1, obj2) +func (a *Assertions) NotEqualValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotEqualValues(a.t, expected, actual, msgAndArgs...) +} + +// NotEqualValuesf asserts that two objects are not equal even when converted to the same type +// +// a.NotEqualValuesf(obj1, obj2, "error message %s", "formatted") +func (a *Assertions) NotEqualValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotEqualValuesf(a.t, expected, actual, msg, args...) +} + +// NotEqualf asserts that the specified values are NOT equal. +// +// a.NotEqualf(obj1, obj2, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func (a *Assertions) NotEqualf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotEqualf(a.t, expected, actual, msg, args...) +} + +// NotErrorAs asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func (a *Assertions) NotErrorAs(err error, target interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotErrorAs(a.t, err, target, msgAndArgs...) +} + +// NotErrorAsf asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func (a *Assertions) NotErrorAsf(err error, target interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotErrorAsf(a.t, err, target, msg, args...) +} + +// NotErrorIs asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) NotErrorIs(err error, target error, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotErrorIs(a.t, err, target, msgAndArgs...) +} + +// NotErrorIsf asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) NotErrorIsf(err error, target error, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotErrorIsf(a.t, err, target, msg, args...) +} + +// NotImplements asserts that an object does not implement the specified interface. +// +// a.NotImplements((*MyInterface)(nil), new(MyObject)) +func (a *Assertions) NotImplements(interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotImplements(a.t, interfaceObject, object, msgAndArgs...) +} + +// NotImplementsf asserts that an object does not implement the specified interface. +// +// a.NotImplementsf((*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func (a *Assertions) NotImplementsf(interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotImplementsf(a.t, interfaceObject, object, msg, args...) +} + +// NotNil asserts that the specified object is not nil. +// +// a.NotNil(err) +func (a *Assertions) NotNil(object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotNil(a.t, object, msgAndArgs...) +} + +// NotNilf asserts that the specified object is not nil. +// +// a.NotNilf(err, "error message %s", "formatted") +func (a *Assertions) NotNilf(object interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotNilf(a.t, object, msg, args...) +} + +// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// a.NotPanics(func(){ RemainCalm() }) +func (a *Assertions) NotPanics(f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotPanics(a.t, f, msgAndArgs...) +} + +// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// a.NotPanicsf(func(){ RemainCalm() }, "error message %s", "formatted") +func (a *Assertions) NotPanicsf(f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotPanicsf(a.t, f, msg, args...) +} + +// NotRegexp asserts that a specified regexp does not match a string. +// +// a.NotRegexp(regexp.MustCompile("starts"), "it's starting") +// a.NotRegexp("^start", "it's not starting") +func (a *Assertions) NotRegexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotRegexp(a.t, rx, str, msgAndArgs...) +} + +// NotRegexpf asserts that a specified regexp does not match a string. +// +// a.NotRegexpf(regexp.MustCompile("starts"), "it's starting", "error message %s", "formatted") +// a.NotRegexpf("^start", "it's not starting", "error message %s", "formatted") +func (a *Assertions) NotRegexpf(rx interface{}, str interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotRegexpf(a.t, rx, str, msg, args...) +} + +// NotSame asserts that two pointers do not reference the same object. +// +// a.NotSame(ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) NotSame(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotSame(a.t, expected, actual, msgAndArgs...) +} + +// NotSamef asserts that two pointers do not reference the same object. +// +// a.NotSamef(ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) NotSamef(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotSamef(a.t, expected, actual, msg, args...) +} + +// NotSubset asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.NotSubset([1, 3, 4], [1, 2]) +// a.NotSubset({"x": 1, "y": 2}, {"z": 3}) +// a.NotSubset([1, 3, 4], {1: "one", 2: "two"}) +// a.NotSubset({"x": 1, "y": 2}, ["z"]) +func (a *Assertions) NotSubset(list interface{}, subset interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotSubset(a.t, list, subset, msgAndArgs...) +} + +// NotSubsetf asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.NotSubsetf([1, 3, 4], [1, 2], "error message %s", "formatted") +// a.NotSubsetf({"x": 1, "y": 2}, {"z": 3}, "error message %s", "formatted") +// a.NotSubsetf([1, 3, 4], {1: "one", 2: "two"}, "error message %s", "formatted") +// a.NotSubsetf({"x": 1, "y": 2}, ["z"], "error message %s", "formatted") +func (a *Assertions) NotSubsetf(list interface{}, subset interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotSubsetf(a.t, list, subset, msg, args...) +} + +// NotZero asserts that i is not the zero value for its type. +func (a *Assertions) NotZero(i interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotZero(a.t, i, msgAndArgs...) +} + +// NotZerof asserts that i is not the zero value for its type. +func (a *Assertions) NotZerof(i interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return NotZerof(a.t, i, msg, args...) +} + +// Panics asserts that the code inside the specified PanicTestFunc panics. +// +// a.Panics(func(){ GoCrazy() }) +func (a *Assertions) Panics(f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Panics(a.t, f, msgAndArgs...) +} + +// PanicsWithError asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// a.PanicsWithError("crazy error", func(){ GoCrazy() }) +func (a *Assertions) PanicsWithError(errString string, f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return PanicsWithError(a.t, errString, f, msgAndArgs...) +} + +// PanicsWithErrorf asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// a.PanicsWithErrorf("crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func (a *Assertions) PanicsWithErrorf(errString string, f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return PanicsWithErrorf(a.t, errString, f, msg, args...) +} + +// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// a.PanicsWithValue("crazy error", func(){ GoCrazy() }) +func (a *Assertions) PanicsWithValue(expected interface{}, f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return PanicsWithValue(a.t, expected, f, msgAndArgs...) +} + +// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// a.PanicsWithValuef("crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func (a *Assertions) PanicsWithValuef(expected interface{}, f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return PanicsWithValuef(a.t, expected, f, msg, args...) +} + +// Panicsf asserts that the code inside the specified PanicTestFunc panics. +// +// a.Panicsf(func(){ GoCrazy() }, "error message %s", "formatted") +func (a *Assertions) Panicsf(f PanicTestFunc, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Panicsf(a.t, f, msg, args...) +} + +// Positive asserts that the specified element is positive +// +// a.Positive(1) +// a.Positive(1.23) +func (a *Assertions) Positive(e interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Positive(a.t, e, msgAndArgs...) +} + +// Positivef asserts that the specified element is positive +// +// a.Positivef(1, "error message %s", "formatted") +// a.Positivef(1.23, "error message %s", "formatted") +func (a *Assertions) Positivef(e interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Positivef(a.t, e, msg, args...) +} + +// Regexp asserts that a specified regexp matches a string. +// +// a.Regexp(regexp.MustCompile("start"), "it's starting") +// a.Regexp("start...$", "it's not starting") +func (a *Assertions) Regexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Regexp(a.t, rx, str, msgAndArgs...) +} + +// Regexpf asserts that a specified regexp matches a string. +// +// a.Regexpf(regexp.MustCompile("start"), "it's starting", "error message %s", "formatted") +// a.Regexpf("start...$", "it's not starting", "error message %s", "formatted") +func (a *Assertions) Regexpf(rx interface{}, str interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Regexpf(a.t, rx, str, msg, args...) +} + +// Same asserts that two pointers reference the same object. +// +// a.Same(ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) Same(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Same(a.t, expected, actual, msgAndArgs...) +} + +// Samef asserts that two pointers reference the same object. +// +// a.Samef(ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) Samef(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Samef(a.t, expected, actual, msg, args...) +} + +// Subset asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.Subset([1, 2, 3], [1, 2]) +// a.Subset({"x": 1, "y": 2}, {"x": 1}) +// a.Subset([1, 2, 3], {1: "one", 2: "two"}) +// a.Subset({"x": 1, "y": 2}, ["x"]) +func (a *Assertions) Subset(list interface{}, subset interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Subset(a.t, list, subset, msgAndArgs...) +} + +// Subsetf asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.Subsetf([1, 2, 3], [1, 2], "error message %s", "formatted") +// a.Subsetf({"x": 1, "y": 2}, {"x": 1}, "error message %s", "formatted") +// a.Subsetf([1, 2, 3], {1: "one", 2: "two"}, "error message %s", "formatted") +// a.Subsetf({"x": 1, "y": 2}, ["x"], "error message %s", "formatted") +func (a *Assertions) Subsetf(list interface{}, subset interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Subsetf(a.t, list, subset, msg, args...) +} + +// True asserts that the specified value is true. +// +// a.True(myBool) +func (a *Assertions) True(value bool, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return True(a.t, value, msgAndArgs...) +} + +// Truef asserts that the specified value is true. +// +// a.Truef(myBool, "error message %s", "formatted") +func (a *Assertions) Truef(value bool, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Truef(a.t, value, msg, args...) +} + +// WithinDuration asserts that the two times are within duration delta of each other. +// +// a.WithinDuration(time.Now(), time.Now(), 10*time.Second) +func (a *Assertions) WithinDuration(expected time.Time, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return WithinDuration(a.t, expected, actual, delta, msgAndArgs...) +} + +// WithinDurationf asserts that the two times are within duration delta of each other. +// +// a.WithinDurationf(time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") +func (a *Assertions) WithinDurationf(expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return WithinDurationf(a.t, expected, actual, delta, msg, args...) +} + +// WithinRange asserts that a time is within a time range (inclusive). +// +// a.WithinRange(time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second)) +func (a *Assertions) WithinRange(actual time.Time, start time.Time, end time.Time, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return WithinRange(a.t, actual, start, end, msgAndArgs...) +} + +// WithinRangef asserts that a time is within a time range (inclusive). +// +// a.WithinRangef(time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second), "error message %s", "formatted") +func (a *Assertions) WithinRangef(actual time.Time, start time.Time, end time.Time, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return WithinRangef(a.t, actual, start, end, msg, args...) +} + +// YAMLEq asserts that two YAML strings are equivalent. +func (a *Assertions) YAMLEq(expected string, actual string, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return YAMLEq(a.t, expected, actual, msgAndArgs...) +} + +// YAMLEqf asserts that two YAML strings are equivalent. +func (a *Assertions) YAMLEqf(expected string, actual string, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return YAMLEqf(a.t, expected, actual, msg, args...) +} + +// Zero asserts that i is the zero value for its type. +func (a *Assertions) Zero(i interface{}, msgAndArgs ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Zero(a.t, i, msgAndArgs...) +} + +// Zerof asserts that i is the zero value for its type. +func (a *Assertions) Zerof(i interface{}, msg string, args ...interface{}) bool { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + return Zerof(a.t, i, msg, args...) +} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_forward.go.tmpl b/vendor/github.com/stretchr/testify/assert/assertion_forward.go.tmpl new file mode 100644 index 00000000..188bb9e1 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertion_forward.go.tmpl @@ -0,0 +1,5 @@ +{{.CommentWithoutT "a"}} +func (a *Assertions) {{.DocInfo.Name}}({{.Params}}) bool { + if h, ok := a.t.(tHelper); ok { h.Helper() } + return {{.DocInfo.Name}}(a.t, {{.ForwardedParams}}) +} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_order.go b/vendor/github.com/stretchr/testify/assert/assertion_order.go new file mode 100644 index 00000000..2fdf80fd --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertion_order.go @@ -0,0 +1,81 @@ +package assert + +import ( + "fmt" + "reflect" +) + +// isOrdered checks that collection contains orderable elements. +func isOrdered(t TestingT, object interface{}, allowedComparesResults []compareResult, failMessage string, msgAndArgs ...interface{}) bool { + objKind := reflect.TypeOf(object).Kind() + if objKind != reflect.Slice && objKind != reflect.Array { + return false + } + + objValue := reflect.ValueOf(object) + objLen := objValue.Len() + + if objLen <= 1 { + return true + } + + value := objValue.Index(0) + valueInterface := value.Interface() + firstValueKind := value.Kind() + + for i := 1; i < objLen; i++ { + prevValue := value + prevValueInterface := valueInterface + + value = objValue.Index(i) + valueInterface = value.Interface() + + compareResult, isComparable := compare(prevValueInterface, valueInterface, firstValueKind) + + if !isComparable { + return Fail(t, fmt.Sprintf(`Can not compare type "%T" and "%T"`, value, prevValue), msgAndArgs...) + } + + if !containsValue(allowedComparesResults, compareResult) { + return Fail(t, fmt.Sprintf(failMessage, prevValue, value), msgAndArgs...) + } + } + + return true +} + +// IsIncreasing asserts that the collection is increasing +// +// assert.IsIncreasing(t, []int{1, 2, 3}) +// assert.IsIncreasing(t, []float{1, 2}) +// assert.IsIncreasing(t, []string{"a", "b"}) +func IsIncreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + return isOrdered(t, object, []compareResult{compareLess}, "\"%v\" is not less than \"%v\"", msgAndArgs...) +} + +// IsNonIncreasing asserts that the collection is not increasing +// +// assert.IsNonIncreasing(t, []int{2, 1, 1}) +// assert.IsNonIncreasing(t, []float{2, 1}) +// assert.IsNonIncreasing(t, []string{"b", "a"}) +func IsNonIncreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + return isOrdered(t, object, []compareResult{compareEqual, compareGreater}, "\"%v\" is not greater than or equal to \"%v\"", msgAndArgs...) +} + +// IsDecreasing asserts that the collection is decreasing +// +// assert.IsDecreasing(t, []int{2, 1, 0}) +// assert.IsDecreasing(t, []float{2, 1}) +// assert.IsDecreasing(t, []string{"b", "a"}) +func IsDecreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + return isOrdered(t, object, []compareResult{compareGreater}, "\"%v\" is not greater than \"%v\"", msgAndArgs...) +} + +// IsNonDecreasing asserts that the collection is not decreasing +// +// assert.IsNonDecreasing(t, []int{1, 1, 2}) +// assert.IsNonDecreasing(t, []float{1, 2}) +// assert.IsNonDecreasing(t, []string{"a", "b"}) +func IsNonDecreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + return isOrdered(t, object, []compareResult{compareLess, compareEqual}, "\"%v\" is not less than or equal to \"%v\"", msgAndArgs...) +} diff --git a/vendor/github.com/stretchr/testify/assert/assertions.go b/vendor/github.com/stretchr/testify/assert/assertions.go new file mode 100644 index 00000000..de8de0cb --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/assertions.go @@ -0,0 +1,2295 @@ +package assert + +import ( + "bufio" + "bytes" + "encoding/json" + "errors" + "fmt" + "math" + "os" + "reflect" + "regexp" + "runtime" + "runtime/debug" + "strings" + "time" + "unicode" + "unicode/utf8" + + "github.com/davecgh/go-spew/spew" + "github.com/pmezard/go-difflib/difflib" + + // Wrapper around gopkg.in/yaml.v3 + "github.com/stretchr/testify/assert/yaml" +) + +//go:generate sh -c "cd ../_codegen && go build && cd - && ../_codegen/_codegen -output-package=assert -template=assertion_format.go.tmpl" + +// TestingT is an interface wrapper around *testing.T +type TestingT interface { + Errorf(format string, args ...interface{}) +} + +// ComparisonAssertionFunc is a common function prototype when comparing two values. Can be useful +// for table driven tests. +type ComparisonAssertionFunc func(TestingT, interface{}, interface{}, ...interface{}) bool + +// ValueAssertionFunc is a common function prototype when validating a single value. Can be useful +// for table driven tests. +type ValueAssertionFunc func(TestingT, interface{}, ...interface{}) bool + +// BoolAssertionFunc is a common function prototype when validating a bool value. Can be useful +// for table driven tests. +type BoolAssertionFunc func(TestingT, bool, ...interface{}) bool + +// ErrorAssertionFunc is a common function prototype when validating an error value. Can be useful +// for table driven tests. +type ErrorAssertionFunc func(TestingT, error, ...interface{}) bool + +// PanicAssertionFunc is a common function prototype when validating a panic value. Can be useful +// for table driven tests. +type PanicAssertionFunc = func(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool + +// Comparison is a custom function that returns true on success and false on failure +type Comparison func() (success bool) + +/* + Helper functions +*/ + +// ObjectsAreEqual determines if two objects are considered equal. +// +// This function does no assertion of any kind. +func ObjectsAreEqual(expected, actual interface{}) bool { + if expected == nil || actual == nil { + return expected == actual + } + + exp, ok := expected.([]byte) + if !ok { + return reflect.DeepEqual(expected, actual) + } + + act, ok := actual.([]byte) + if !ok { + return false + } + if exp == nil || act == nil { + return exp == nil && act == nil + } + return bytes.Equal(exp, act) +} + +// copyExportedFields iterates downward through nested data structures and creates a copy +// that only contains the exported struct fields. +func copyExportedFields(expected interface{}) interface{} { + if isNil(expected) { + return expected + } + + expectedType := reflect.TypeOf(expected) + expectedKind := expectedType.Kind() + expectedValue := reflect.ValueOf(expected) + + switch expectedKind { + case reflect.Struct: + result := reflect.New(expectedType).Elem() + for i := 0; i < expectedType.NumField(); i++ { + field := expectedType.Field(i) + isExported := field.IsExported() + if isExported { + fieldValue := expectedValue.Field(i) + if isNil(fieldValue) || isNil(fieldValue.Interface()) { + continue + } + newValue := copyExportedFields(fieldValue.Interface()) + result.Field(i).Set(reflect.ValueOf(newValue)) + } + } + return result.Interface() + + case reflect.Ptr: + result := reflect.New(expectedType.Elem()) + unexportedRemoved := copyExportedFields(expectedValue.Elem().Interface()) + result.Elem().Set(reflect.ValueOf(unexportedRemoved)) + return result.Interface() + + case reflect.Array, reflect.Slice: + var result reflect.Value + if expectedKind == reflect.Array { + result = reflect.New(reflect.ArrayOf(expectedValue.Len(), expectedType.Elem())).Elem() + } else { + result = reflect.MakeSlice(expectedType, expectedValue.Len(), expectedValue.Len()) + } + for i := 0; i < expectedValue.Len(); i++ { + index := expectedValue.Index(i) + if isNil(index) { + continue + } + unexportedRemoved := copyExportedFields(index.Interface()) + result.Index(i).Set(reflect.ValueOf(unexportedRemoved)) + } + return result.Interface() + + case reflect.Map: + result := reflect.MakeMap(expectedType) + for _, k := range expectedValue.MapKeys() { + index := expectedValue.MapIndex(k) + unexportedRemoved := copyExportedFields(index.Interface()) + result.SetMapIndex(k, reflect.ValueOf(unexportedRemoved)) + } + return result.Interface() + + default: + return expected + } +} + +// ObjectsExportedFieldsAreEqual determines if the exported (public) fields of two objects are +// considered equal. This comparison of only exported fields is applied recursively to nested data +// structures. +// +// This function does no assertion of any kind. +// +// Deprecated: Use [EqualExportedValues] instead. +func ObjectsExportedFieldsAreEqual(expected, actual interface{}) bool { + expectedCleaned := copyExportedFields(expected) + actualCleaned := copyExportedFields(actual) + return ObjectsAreEqualValues(expectedCleaned, actualCleaned) +} + +// ObjectsAreEqualValues gets whether two objects are equal, or if their +// values are equal. +func ObjectsAreEqualValues(expected, actual interface{}) bool { + if ObjectsAreEqual(expected, actual) { + return true + } + + expectedValue := reflect.ValueOf(expected) + actualValue := reflect.ValueOf(actual) + if !expectedValue.IsValid() || !actualValue.IsValid() { + return false + } + + expectedType := expectedValue.Type() + actualType := actualValue.Type() + if !expectedType.ConvertibleTo(actualType) { + return false + } + + if !isNumericType(expectedType) || !isNumericType(actualType) { + // Attempt comparison after type conversion + return reflect.DeepEqual( + expectedValue.Convert(actualType).Interface(), actual, + ) + } + + // If BOTH values are numeric, there are chances of false positives due + // to overflow or underflow. So, we need to make sure to always convert + // the smaller type to a larger type before comparing. + if expectedType.Size() >= actualType.Size() { + return actualValue.Convert(expectedType).Interface() == expected + } + + return expectedValue.Convert(actualType).Interface() == actual +} + +// isNumericType returns true if the type is one of: +// int, int8, int16, int32, int64, uint, uint8, uint16, uint32, uint64, +// float32, float64, complex64, complex128 +func isNumericType(t reflect.Type) bool { + return t.Kind() >= reflect.Int && t.Kind() <= reflect.Complex128 +} + +/* CallerInfo is necessary because the assert functions use the testing object +internally, causing it to print the file:line of the assert method, rather than where +the problem actually occurred in calling code.*/ + +// CallerInfo returns an array of strings containing the file and line number +// of each stack frame leading from the current test to the assert call that +// failed. +func CallerInfo() []string { + var pc uintptr + var file string + var line int + var name string + + const stackFrameBufferSize = 10 + pcs := make([]uintptr, stackFrameBufferSize) + + callers := []string{} + offset := 1 + + for { + n := runtime.Callers(offset, pcs) + + if n == 0 { + break + } + + frames := runtime.CallersFrames(pcs[:n]) + + for { + frame, more := frames.Next() + pc = frame.PC + file = frame.File + line = frame.Line + + // This is a huge edge case, but it will panic if this is the case, see #180 + if file == "" { + break + } + + f := runtime.FuncForPC(pc) + if f == nil { + break + } + name = f.Name() + + // testing.tRunner is the standard library function that calls + // tests. Subtests are called directly by tRunner, without going through + // the Test/Benchmark/Example function that contains the t.Run calls, so + // with subtests we should break when we hit tRunner, without adding it + // to the list of callers. + if name == "testing.tRunner" { + break + } + + parts := strings.Split(file, "/") + if len(parts) > 1 { + filename := parts[len(parts)-1] + dir := parts[len(parts)-2] + if (dir != "assert" && dir != "mock" && dir != "require") || filename == "mock_test.go" { + callers = append(callers, fmt.Sprintf("%s:%d", file, line)) + } + } + + // Drop the package + dotPos := strings.LastIndexByte(name, '.') + name = name[dotPos+1:] + if isTest(name, "Test") || + isTest(name, "Benchmark") || + isTest(name, "Example") { + break + } + + if !more { + break + } + } + + // Next batch + offset += cap(pcs) + } + + return callers +} + +// Stolen from the `go test` tool. +// isTest tells whether name looks like a test (or benchmark, according to prefix). +// It is a Test (say) if there is a character after Test that is not a lower-case letter. +// We don't want TesticularCancer. +func isTest(name, prefix string) bool { + if !strings.HasPrefix(name, prefix) { + return false + } + if len(name) == len(prefix) { // "Test" is ok + return true + } + r, _ := utf8.DecodeRuneInString(name[len(prefix):]) + return !unicode.IsLower(r) +} + +func messageFromMsgAndArgs(msgAndArgs ...interface{}) string { + if len(msgAndArgs) == 0 || msgAndArgs == nil { + return "" + } + if len(msgAndArgs) == 1 { + msg := msgAndArgs[0] + if msgAsStr, ok := msg.(string); ok { + return msgAsStr + } + return fmt.Sprintf("%+v", msg) + } + if len(msgAndArgs) > 1 { + return fmt.Sprintf(msgAndArgs[0].(string), msgAndArgs[1:]...) + } + return "" +} + +// Aligns the provided message so that all lines after the first line start at the same location as the first line. +// Assumes that the first line starts at the correct location (after carriage return, tab, label, spacer and tab). +// The longestLabelLen parameter specifies the length of the longest label in the output (required because this is the +// basis on which the alignment occurs). +func indentMessageLines(message string, longestLabelLen int) string { + outBuf := new(bytes.Buffer) + + for i, scanner := 0, bufio.NewScanner(strings.NewReader(message)); scanner.Scan(); i++ { + // no need to align first line because it starts at the correct location (after the label) + if i != 0 { + // append alignLen+1 spaces to align with "{{longestLabel}}:" before adding tab + outBuf.WriteString("\n\t" + strings.Repeat(" ", longestLabelLen+1) + "\t") + } + outBuf.WriteString(scanner.Text()) + } + + return outBuf.String() +} + +type failNower interface { + FailNow() +} + +// FailNow fails test +func FailNow(t TestingT, failureMessage string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + Fail(t, failureMessage, msgAndArgs...) + + // We cannot extend TestingT with FailNow() and + // maintain backwards compatibility, so we fallback + // to panicking when FailNow is not available in + // TestingT. + // See issue #263 + + if t, ok := t.(failNower); ok { + t.FailNow() + } else { + panic("test failed and t is missing `FailNow()`") + } + return false +} + +// Fail reports a failure through +func Fail(t TestingT, failureMessage string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + content := []labeledContent{ + {"Error Trace", strings.Join(CallerInfo(), "\n\t\t\t")}, + {"Error", failureMessage}, + } + + // Add test name if the Go version supports it + if n, ok := t.(interface { + Name() string + }); ok { + content = append(content, labeledContent{"Test", n.Name()}) + } + + message := messageFromMsgAndArgs(msgAndArgs...) + if len(message) > 0 { + content = append(content, labeledContent{"Messages", message}) + } + + t.Errorf("\n%s", ""+labeledOutput(content...)) + + return false +} + +type labeledContent struct { + label string + content string +} + +// labeledOutput returns a string consisting of the provided labeledContent. Each labeled output is appended in the following manner: +// +// \t{{label}}:{{align_spaces}}\t{{content}}\n +// +// The initial carriage return is required to undo/erase any padding added by testing.T.Errorf. The "\t{{label}}:" is for the label. +// If a label is shorter than the longest label provided, padding spaces are added to make all the labels match in length. Once this +// alignment is achieved, "\t{{content}}\n" is added for the output. +// +// If the content of the labeledOutput contains line breaks, the subsequent lines are aligned so that they start at the same location as the first line. +func labeledOutput(content ...labeledContent) string { + longestLabel := 0 + for _, v := range content { + if len(v.label) > longestLabel { + longestLabel = len(v.label) + } + } + var output string + for _, v := range content { + output += "\t" + v.label + ":" + strings.Repeat(" ", longestLabel-len(v.label)) + "\t" + indentMessageLines(v.content, longestLabel) + "\n" + } + return output +} + +// Implements asserts that an object is implemented by the specified interface. +// +// assert.Implements(t, (*MyInterface)(nil), new(MyObject)) +func Implements(t TestingT, interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + interfaceType := reflect.TypeOf(interfaceObject).Elem() + + if object == nil { + return Fail(t, fmt.Sprintf("Cannot check if nil implements %v", interfaceType), msgAndArgs...) + } + if !reflect.TypeOf(object).Implements(interfaceType) { + return Fail(t, fmt.Sprintf("%T must implement %v", object, interfaceType), msgAndArgs...) + } + + return true +} + +// NotImplements asserts that an object does not implement the specified interface. +// +// assert.NotImplements(t, (*MyInterface)(nil), new(MyObject)) +func NotImplements(t TestingT, interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + interfaceType := reflect.TypeOf(interfaceObject).Elem() + + if object == nil { + return Fail(t, fmt.Sprintf("Cannot check if nil does not implement %v", interfaceType), msgAndArgs...) + } + if reflect.TypeOf(object).Implements(interfaceType) { + return Fail(t, fmt.Sprintf("%T implements %v", object, interfaceType), msgAndArgs...) + } + + return true +} + +func isType(expectedType, object interface{}) bool { + return ObjectsAreEqual(reflect.TypeOf(object), reflect.TypeOf(expectedType)) +} + +// IsType asserts that the specified objects are of the same type. +// +// assert.IsType(t, &MyStruct{}, &MyStruct{}) +func IsType(t TestingT, expectedType, object interface{}, msgAndArgs ...interface{}) bool { + if isType(expectedType, object) { + return true + } + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, fmt.Sprintf("Object expected to be of type %T, but was %T", expectedType, object), msgAndArgs...) +} + +// IsNotType asserts that the specified objects are not of the same type. +// +// assert.IsNotType(t, &NotMyStruct{}, &MyStruct{}) +func IsNotType(t TestingT, theType, object interface{}, msgAndArgs ...interface{}) bool { + if !isType(theType, object) { + return true + } + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, fmt.Sprintf("Object type expected to be different than %T", theType), msgAndArgs...) +} + +// Equal asserts that two objects are equal. +// +// assert.Equal(t, 123, 123) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func Equal(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if err := validateEqualArgs(expected, actual); err != nil { + return Fail(t, fmt.Sprintf("Invalid operation: %#v == %#v (%s)", + expected, actual, err), msgAndArgs...) + } + + if !ObjectsAreEqual(expected, actual) { + diff := diff(expected, actual) + expected, actual = formatUnequalValues(expected, actual) + return Fail(t, fmt.Sprintf("Not equal: \n"+ + "expected: %s\n"+ + "actual : %s%s", expected, actual, diff), msgAndArgs...) + } + + return true +} + +// validateEqualArgs checks whether provided arguments can be safely used in the +// Equal/NotEqual functions. +func validateEqualArgs(expected, actual interface{}) error { + if expected == nil && actual == nil { + return nil + } + + if isFunction(expected) || isFunction(actual) { + return errors.New("cannot take func type as argument") + } + return nil +} + +// Same asserts that two pointers reference the same object. +// +// assert.Same(t, ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func Same(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + same, ok := samePointers(expected, actual) + if !ok { + return Fail(t, "Both arguments must be pointers", msgAndArgs...) + } + + if !same { + // both are pointers but not the same type & pointing to the same address + return Fail(t, fmt.Sprintf("Not same: \n"+ + "expected: %p %#[1]v\n"+ + "actual : %p %#[2]v", + expected, actual), msgAndArgs...) + } + + return true +} + +// NotSame asserts that two pointers do not reference the same object. +// +// assert.NotSame(t, ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func NotSame(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + same, ok := samePointers(expected, actual) + if !ok { + // fails when the arguments are not pointers + return !(Fail(t, "Both arguments must be pointers", msgAndArgs...)) + } + + if same { + return Fail(t, fmt.Sprintf( + "Expected and actual point to the same object: %p %#[1]v", + expected), msgAndArgs...) + } + return true +} + +// samePointers checks if two generic interface objects are pointers of the same +// type pointing to the same object. It returns two values: same indicating if +// they are the same type and point to the same object, and ok indicating that +// both inputs are pointers. +func samePointers(first, second interface{}) (same bool, ok bool) { + firstPtr, secondPtr := reflect.ValueOf(first), reflect.ValueOf(second) + if firstPtr.Kind() != reflect.Ptr || secondPtr.Kind() != reflect.Ptr { + return false, false // not both are pointers + } + + firstType, secondType := reflect.TypeOf(first), reflect.TypeOf(second) + if firstType != secondType { + return false, true // both are pointers, but of different types + } + + // compare pointer addresses + return first == second, true +} + +// formatUnequalValues takes two values of arbitrary types and returns string +// representations appropriate to be presented to the user. +// +// If the values are not of like type, the returned strings will be prefixed +// with the type name, and the value will be enclosed in parentheses similar +// to a type conversion in the Go grammar. +func formatUnequalValues(expected, actual interface{}) (e string, a string) { + if reflect.TypeOf(expected) != reflect.TypeOf(actual) { + return fmt.Sprintf("%T(%s)", expected, truncatingFormat(expected)), + fmt.Sprintf("%T(%s)", actual, truncatingFormat(actual)) + } + switch expected.(type) { + case time.Duration: + return fmt.Sprintf("%v", expected), fmt.Sprintf("%v", actual) + } + return truncatingFormat(expected), truncatingFormat(actual) +} + +// truncatingFormat formats the data and truncates it if it's too long. +// +// This helps keep formatted error messages lines from exceeding the +// bufio.MaxScanTokenSize max line length that the go testing framework imposes. +func truncatingFormat(data interface{}) string { + value := fmt.Sprintf("%#v", data) + max := bufio.MaxScanTokenSize - 100 // Give us some space the type info too if needed. + if len(value) > max { + value = value[0:max] + "<... truncated>" + } + return value +} + +// EqualValues asserts that two objects are equal or convertible to the larger +// type and equal. +// +// assert.EqualValues(t, uint32(123), int32(123)) +func EqualValues(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + if !ObjectsAreEqualValues(expected, actual) { + diff := diff(expected, actual) + expected, actual = formatUnequalValues(expected, actual) + return Fail(t, fmt.Sprintf("Not equal: \n"+ + "expected: %s\n"+ + "actual : %s%s", expected, actual, diff), msgAndArgs...) + } + + return true +} + +// EqualExportedValues asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// assert.EqualExportedValues(t, S{1, 2}, S{1, 3}) => true +// assert.EqualExportedValues(t, S{1, 2}, S{2, 3}) => false +func EqualExportedValues(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + aType := reflect.TypeOf(expected) + bType := reflect.TypeOf(actual) + + if aType != bType { + return Fail(t, fmt.Sprintf("Types expected to match exactly\n\t%v != %v", aType, bType), msgAndArgs...) + } + + expected = copyExportedFields(expected) + actual = copyExportedFields(actual) + + if !ObjectsAreEqualValues(expected, actual) { + diff := diff(expected, actual) + expected, actual = formatUnequalValues(expected, actual) + return Fail(t, fmt.Sprintf("Not equal (comparing only exported fields): \n"+ + "expected: %s\n"+ + "actual : %s%s", expected, actual, diff), msgAndArgs...) + } + + return true +} + +// Exactly asserts that two objects are equal in value and type. +// +// assert.Exactly(t, int32(123), int64(123)) +func Exactly(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + aType := reflect.TypeOf(expected) + bType := reflect.TypeOf(actual) + + if aType != bType { + return Fail(t, fmt.Sprintf("Types expected to match exactly\n\t%v != %v", aType, bType), msgAndArgs...) + } + + return Equal(t, expected, actual, msgAndArgs...) +} + +// NotNil asserts that the specified object is not nil. +// +// assert.NotNil(t, err) +func NotNil(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + if !isNil(object) { + return true + } + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, "Expected value not to be nil.", msgAndArgs...) +} + +// isNil checks if a specified object is nil or not, without Failing. +func isNil(object interface{}) bool { + if object == nil { + return true + } + + value := reflect.ValueOf(object) + switch value.Kind() { + case + reflect.Chan, reflect.Func, + reflect.Interface, reflect.Map, + reflect.Ptr, reflect.Slice, reflect.UnsafePointer: + + return value.IsNil() + } + + return false +} + +// Nil asserts that the specified object is nil. +// +// assert.Nil(t, err) +func Nil(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + if isNil(object) { + return true + } + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, fmt.Sprintf("Expected nil, but got: %#v", object), msgAndArgs...) +} + +// isEmpty gets whether the specified object is considered empty or not. +func isEmpty(object interface{}) bool { + // get nil case out of the way + if object == nil { + return true + } + + return isEmptyValue(reflect.ValueOf(object)) +} + +// isEmptyValue gets whether the specified reflect.Value is considered empty or not. +func isEmptyValue(objValue reflect.Value) bool { + if objValue.IsZero() { + return true + } + // Special cases of non-zero values that we consider empty + switch objValue.Kind() { + // collection types are empty when they have no element + // Note: array types are empty when they match their zero-initialized state. + case reflect.Chan, reflect.Map, reflect.Slice: + return objValue.Len() == 0 + // non-nil pointers are empty if the value they point to is empty + case reflect.Ptr: + return isEmptyValue(objValue.Elem()) + } + return false +} + +// Empty asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// assert.Empty(t, obj) +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func Empty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + pass := isEmpty(object) + if !pass { + if h, ok := t.(tHelper); ok { + h.Helper() + } + Fail(t, fmt.Sprintf("Should be empty, but was %v", object), msgAndArgs...) + } + + return pass +} + +// NotEmpty asserts that the specified object is NOT [Empty]. +// +// if assert.NotEmpty(t, obj) { +// assert.Equal(t, "two", obj[1]) +// } +func NotEmpty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { + pass := !isEmpty(object) + if !pass { + if h, ok := t.(tHelper); ok { + h.Helper() + } + Fail(t, fmt.Sprintf("Should NOT be empty, but was %v", object), msgAndArgs...) + } + + return pass +} + +// getLen tries to get the length of an object. +// It returns (0, false) if impossible. +func getLen(x interface{}) (length int, ok bool) { + v := reflect.ValueOf(x) + defer func() { + ok = recover() == nil + }() + return v.Len(), true +} + +// Len asserts that the specified object has specific length. +// Len also fails if the object has a type that len() not accept. +// +// assert.Len(t, mySlice, 3) +func Len(t TestingT, object interface{}, length int, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + l, ok := getLen(object) + if !ok { + return Fail(t, fmt.Sprintf("\"%v\" could not be applied builtin len()", object), msgAndArgs...) + } + + if l != length { + return Fail(t, fmt.Sprintf("\"%v\" should have %d item(s), but has %d", object, length, l), msgAndArgs...) + } + return true +} + +// True asserts that the specified value is true. +// +// assert.True(t, myBool) +func True(t TestingT, value bool, msgAndArgs ...interface{}) bool { + if !value { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, "Should be true", msgAndArgs...) + } + + return true +} + +// False asserts that the specified value is false. +// +// assert.False(t, myBool) +func False(t TestingT, value bool, msgAndArgs ...interface{}) bool { + if value { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, "Should be false", msgAndArgs...) + } + + return true +} + +// NotEqual asserts that the specified values are NOT equal. +// +// assert.NotEqual(t, obj1, obj2) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func NotEqual(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if err := validateEqualArgs(expected, actual); err != nil { + return Fail(t, fmt.Sprintf("Invalid operation: %#v != %#v (%s)", + expected, actual, err), msgAndArgs...) + } + + if ObjectsAreEqual(expected, actual) { + return Fail(t, fmt.Sprintf("Should not be: %#v\n", actual), msgAndArgs...) + } + + return true +} + +// NotEqualValues asserts that two objects are not equal even when converted to the same type +// +// assert.NotEqualValues(t, obj1, obj2) +func NotEqualValues(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + if ObjectsAreEqualValues(expected, actual) { + return Fail(t, fmt.Sprintf("Should not be: %#v\n", actual), msgAndArgs...) + } + + return true +} + +// containsElement try loop over the list check if the list includes the element. +// return (false, false) if impossible. +// return (true, false) if element was not found. +// return (true, true) if element was found. +func containsElement(list interface{}, element interface{}) (ok, found bool) { + listValue := reflect.ValueOf(list) + listType := reflect.TypeOf(list) + if listType == nil { + return false, false + } + listKind := listType.Kind() + defer func() { + if e := recover(); e != nil { + ok = false + found = false + } + }() + + if listKind == reflect.String { + elementValue := reflect.ValueOf(element) + return true, strings.Contains(listValue.String(), elementValue.String()) + } + + if listKind == reflect.Map { + mapKeys := listValue.MapKeys() + for i := 0; i < len(mapKeys); i++ { + if ObjectsAreEqual(mapKeys[i].Interface(), element) { + return true, true + } + } + return true, false + } + + for i := 0; i < listValue.Len(); i++ { + if ObjectsAreEqual(listValue.Index(i).Interface(), element) { + return true, true + } + } + return true, false +} + +// Contains asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// assert.Contains(t, "Hello World", "World") +// assert.Contains(t, ["Hello", "World"], "World") +// assert.Contains(t, {"Hello": "World"}, "Hello") +func Contains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + ok, found := containsElement(s, contains) + if !ok { + return Fail(t, fmt.Sprintf("%#v could not be applied builtin len()", s), msgAndArgs...) + } + if !found { + return Fail(t, fmt.Sprintf("%#v does not contain %#v", s, contains), msgAndArgs...) + } + + return true +} + +// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// assert.NotContains(t, "Hello World", "Earth") +// assert.NotContains(t, ["Hello", "World"], "Earth") +// assert.NotContains(t, {"Hello": "World"}, "Earth") +func NotContains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + ok, found := containsElement(s, contains) + if !ok { + return Fail(t, fmt.Sprintf("%#v could not be applied builtin len()", s), msgAndArgs...) + } + if found { + return Fail(t, fmt.Sprintf("%#v should not contain %#v", s, contains), msgAndArgs...) + } + + return true +} + +// Subset asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// assert.Subset(t, [1, 2, 3], [1, 2]) +// assert.Subset(t, {"x": 1, "y": 2}, {"x": 1}) +// assert.Subset(t, [1, 2, 3], {1: "one", 2: "two"}) +// assert.Subset(t, {"x": 1, "y": 2}, ["x"]) +func Subset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok bool) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if subset == nil { + return true // we consider nil to be equal to the nil set + } + + listKind := reflect.TypeOf(list).Kind() + if listKind != reflect.Array && listKind != reflect.Slice && listKind != reflect.Map { + return Fail(t, fmt.Sprintf("%q has an unsupported type %s", list, listKind), msgAndArgs...) + } + + subsetKind := reflect.TypeOf(subset).Kind() + if subsetKind != reflect.Array && subsetKind != reflect.Slice && subsetKind != reflect.Map { + return Fail(t, fmt.Sprintf("%q has an unsupported type %s", subset, subsetKind), msgAndArgs...) + } + + if subsetKind == reflect.Map && listKind == reflect.Map { + subsetMap := reflect.ValueOf(subset) + actualMap := reflect.ValueOf(list) + + for _, k := range subsetMap.MapKeys() { + ev := subsetMap.MapIndex(k) + av := actualMap.MapIndex(k) + + if !av.IsValid() { + return Fail(t, fmt.Sprintf("%#v does not contain %#v", list, subset), msgAndArgs...) + } + if !ObjectsAreEqual(ev.Interface(), av.Interface()) { + return Fail(t, fmt.Sprintf("%#v does not contain %#v", list, subset), msgAndArgs...) + } + } + + return true + } + + subsetList := reflect.ValueOf(subset) + if subsetKind == reflect.Map { + keys := make([]interface{}, subsetList.Len()) + for idx, key := range subsetList.MapKeys() { + keys[idx] = key.Interface() + } + subsetList = reflect.ValueOf(keys) + } + for i := 0; i < subsetList.Len(); i++ { + element := subsetList.Index(i).Interface() + ok, found := containsElement(list, element) + if !ok { + return Fail(t, fmt.Sprintf("%#v could not be applied builtin len()", list), msgAndArgs...) + } + if !found { + return Fail(t, fmt.Sprintf("%#v does not contain %#v", list, element), msgAndArgs...) + } + } + + return true +} + +// NotSubset asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// assert.NotSubset(t, [1, 3, 4], [1, 2]) +// assert.NotSubset(t, {"x": 1, "y": 2}, {"z": 3}) +// assert.NotSubset(t, [1, 3, 4], {1: "one", 2: "two"}) +// assert.NotSubset(t, {"x": 1, "y": 2}, ["z"]) +func NotSubset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok bool) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if subset == nil { + return Fail(t, "nil is the empty set which is a subset of every set", msgAndArgs...) + } + + listKind := reflect.TypeOf(list).Kind() + if listKind != reflect.Array && listKind != reflect.Slice && listKind != reflect.Map { + return Fail(t, fmt.Sprintf("%q has an unsupported type %s", list, listKind), msgAndArgs...) + } + + subsetKind := reflect.TypeOf(subset).Kind() + if subsetKind != reflect.Array && subsetKind != reflect.Slice && subsetKind != reflect.Map { + return Fail(t, fmt.Sprintf("%q has an unsupported type %s", subset, subsetKind), msgAndArgs...) + } + + if subsetKind == reflect.Map && listKind == reflect.Map { + subsetMap := reflect.ValueOf(subset) + actualMap := reflect.ValueOf(list) + + for _, k := range subsetMap.MapKeys() { + ev := subsetMap.MapIndex(k) + av := actualMap.MapIndex(k) + + if !av.IsValid() { + return true + } + if !ObjectsAreEqual(ev.Interface(), av.Interface()) { + return true + } + } + + return Fail(t, fmt.Sprintf("%q is a subset of %q", subset, list), msgAndArgs...) + } + + subsetList := reflect.ValueOf(subset) + if subsetKind == reflect.Map { + keys := make([]interface{}, subsetList.Len()) + for idx, key := range subsetList.MapKeys() { + keys[idx] = key.Interface() + } + subsetList = reflect.ValueOf(keys) + } + for i := 0; i < subsetList.Len(); i++ { + element := subsetList.Index(i).Interface() + ok, found := containsElement(list, element) + if !ok { + return Fail(t, fmt.Sprintf("%q could not be applied builtin len()", list), msgAndArgs...) + } + if !found { + return true + } + } + + return Fail(t, fmt.Sprintf("%q is a subset of %q", subset, list), msgAndArgs...) +} + +// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// assert.ElementsMatch(t, [1, 3, 2, 3], [1, 3, 3, 2]) +func ElementsMatch(t TestingT, listA, listB interface{}, msgAndArgs ...interface{}) (ok bool) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if isEmpty(listA) && isEmpty(listB) { + return true + } + + if !isList(t, listA, msgAndArgs...) || !isList(t, listB, msgAndArgs...) { + return false + } + + extraA, extraB := diffLists(listA, listB) + + if len(extraA) == 0 && len(extraB) == 0 { + return true + } + + return Fail(t, formatListDiff(listA, listB, extraA, extraB), msgAndArgs...) +} + +// isList checks that the provided value is array or slice. +func isList(t TestingT, list interface{}, msgAndArgs ...interface{}) (ok bool) { + kind := reflect.TypeOf(list).Kind() + if kind != reflect.Array && kind != reflect.Slice { + return Fail(t, fmt.Sprintf("%q has an unsupported type %s, expecting array or slice", list, kind), + msgAndArgs...) + } + return true +} + +// diffLists diffs two arrays/slices and returns slices of elements that are only in A and only in B. +// If some element is present multiple times, each instance is counted separately (e.g. if something is 2x in A and +// 5x in B, it will be 0x in extraA and 3x in extraB). The order of items in both lists is ignored. +func diffLists(listA, listB interface{}) (extraA, extraB []interface{}) { + aValue := reflect.ValueOf(listA) + bValue := reflect.ValueOf(listB) + + aLen := aValue.Len() + bLen := bValue.Len() + + // Mark indexes in bValue that we already used + visited := make([]bool, bLen) + for i := 0; i < aLen; i++ { + element := aValue.Index(i).Interface() + found := false + for j := 0; j < bLen; j++ { + if visited[j] { + continue + } + if ObjectsAreEqual(bValue.Index(j).Interface(), element) { + visited[j] = true + found = true + break + } + } + if !found { + extraA = append(extraA, element) + } + } + + for j := 0; j < bLen; j++ { + if visited[j] { + continue + } + extraB = append(extraB, bValue.Index(j).Interface()) + } + + return +} + +func formatListDiff(listA, listB interface{}, extraA, extraB []interface{}) string { + var msg bytes.Buffer + + msg.WriteString("elements differ") + if len(extraA) > 0 { + msg.WriteString("\n\nextra elements in list A:\n") + msg.WriteString(spewConfig.Sdump(extraA)) + } + if len(extraB) > 0 { + msg.WriteString("\n\nextra elements in list B:\n") + msg.WriteString(spewConfig.Sdump(extraB)) + } + msg.WriteString("\n\nlistA:\n") + msg.WriteString(spewConfig.Sdump(listA)) + msg.WriteString("\n\nlistB:\n") + msg.WriteString(spewConfig.Sdump(listB)) + + return msg.String() +} + +// NotElementsMatch asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// assert.NotElementsMatch(t, [1, 1, 2, 3], [1, 1, 2, 3]) -> false +// +// assert.NotElementsMatch(t, [1, 1, 2, 3], [1, 2, 3]) -> true +// +// assert.NotElementsMatch(t, [1, 2, 3], [1, 2, 4]) -> true +func NotElementsMatch(t TestingT, listA, listB interface{}, msgAndArgs ...interface{}) (ok bool) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if isEmpty(listA) && isEmpty(listB) { + return Fail(t, "listA and listB contain the same elements", msgAndArgs) + } + + if !isList(t, listA, msgAndArgs...) { + return Fail(t, "listA is not a list type", msgAndArgs...) + } + if !isList(t, listB, msgAndArgs...) { + return Fail(t, "listB is not a list type", msgAndArgs...) + } + + extraA, extraB := diffLists(listA, listB) + if len(extraA) == 0 && len(extraB) == 0 { + return Fail(t, "listA and listB contain the same elements", msgAndArgs) + } + + return true +} + +// Condition uses a Comparison to assert a complex condition. +func Condition(t TestingT, comp Comparison, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + result := comp() + if !result { + Fail(t, "Condition failed!", msgAndArgs...) + } + return result +} + +// PanicTestFunc defines a func that should be passed to the assert.Panics and assert.NotPanics +// methods, and represents a simple func that takes no arguments, and returns nothing. +type PanicTestFunc func() + +// didPanic returns true if the function passed to it panics. Otherwise, it returns false. +func didPanic(f PanicTestFunc) (didPanic bool, message interface{}, stack string) { + didPanic = true + + defer func() { + message = recover() + if didPanic { + stack = string(debug.Stack()) + } + }() + + // call the target function + f() + didPanic = false + + return +} + +// Panics asserts that the code inside the specified PanicTestFunc panics. +// +// assert.Panics(t, func(){ GoCrazy() }) +func Panics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + if funcDidPanic, panicValue, _ := didPanic(f); !funcDidPanic { + return Fail(t, fmt.Sprintf("func %#v should panic\n\tPanic value:\t%#v", f, panicValue), msgAndArgs...) + } + + return true +} + +// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// assert.PanicsWithValue(t, "crazy error", func(){ GoCrazy() }) +func PanicsWithValue(t TestingT, expected interface{}, f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + funcDidPanic, panicValue, panickedStack := didPanic(f) + if !funcDidPanic { + return Fail(t, fmt.Sprintf("func %#v should panic\n\tPanic value:\t%#v", f, panicValue), msgAndArgs...) + } + if panicValue != expected { + return Fail(t, fmt.Sprintf("func %#v should panic with value:\t%#v\n\tPanic value:\t%#v\n\tPanic stack:\t%s", f, expected, panicValue, panickedStack), msgAndArgs...) + } + + return true +} + +// PanicsWithError asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// assert.PanicsWithError(t, "crazy error", func(){ GoCrazy() }) +func PanicsWithError(t TestingT, errString string, f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + funcDidPanic, panicValue, panickedStack := didPanic(f) + if !funcDidPanic { + return Fail(t, fmt.Sprintf("func %#v should panic\n\tPanic value:\t%#v", f, panicValue), msgAndArgs...) + } + panicErr, ok := panicValue.(error) + if !ok || panicErr.Error() != errString { + return Fail(t, fmt.Sprintf("func %#v should panic with error message:\t%#v\n\tPanic value:\t%#v\n\tPanic stack:\t%s", f, errString, panicValue, panickedStack), msgAndArgs...) + } + + return true +} + +// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// assert.NotPanics(t, func(){ RemainCalm() }) +func NotPanics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + if funcDidPanic, panicValue, panickedStack := didPanic(f); funcDidPanic { + return Fail(t, fmt.Sprintf("func %#v should not panic\n\tPanic value:\t%v\n\tPanic stack:\t%s", f, panicValue, panickedStack), msgAndArgs...) + } + + return true +} + +// WithinDuration asserts that the two times are within duration delta of each other. +// +// assert.WithinDuration(t, time.Now(), time.Now(), 10*time.Second) +func WithinDuration(t TestingT, expected, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + dt := expected.Sub(actual) + if dt < -delta || dt > delta { + return Fail(t, fmt.Sprintf("Max difference between %v and %v allowed is %v, but difference was %v", expected, actual, delta, dt), msgAndArgs...) + } + + return true +} + +// WithinRange asserts that a time is within a time range (inclusive). +// +// assert.WithinRange(t, time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second)) +func WithinRange(t TestingT, actual, start, end time.Time, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + if end.Before(start) { + return Fail(t, "Start should be before end", msgAndArgs...) + } + + if actual.Before(start) { + return Fail(t, fmt.Sprintf("Time %v expected to be in time range %v to %v, but is before the range", actual, start, end), msgAndArgs...) + } else if actual.After(end) { + return Fail(t, fmt.Sprintf("Time %v expected to be in time range %v to %v, but is after the range", actual, start, end), msgAndArgs...) + } + + return true +} + +func toFloat(x interface{}) (float64, bool) { + var xf float64 + xok := true + + switch xn := x.(type) { + case uint: + xf = float64(xn) + case uint8: + xf = float64(xn) + case uint16: + xf = float64(xn) + case uint32: + xf = float64(xn) + case uint64: + xf = float64(xn) + case int: + xf = float64(xn) + case int8: + xf = float64(xn) + case int16: + xf = float64(xn) + case int32: + xf = float64(xn) + case int64: + xf = float64(xn) + case float32: + xf = float64(xn) + case float64: + xf = xn + case time.Duration: + xf = float64(xn) + default: + xok = false + } + + return xf, xok +} + +// InDelta asserts that the two numerals are within delta of each other. +// +// assert.InDelta(t, math.Pi, 22/7.0, 0.01) +func InDelta(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + af, aok := toFloat(expected) + bf, bok := toFloat(actual) + + if !aok || !bok { + return Fail(t, "Parameters must be numerical", msgAndArgs...) + } + + if math.IsNaN(af) && math.IsNaN(bf) { + return true + } + + if math.IsNaN(af) { + return Fail(t, "Expected must not be NaN", msgAndArgs...) + } + + if math.IsNaN(bf) { + return Fail(t, fmt.Sprintf("Expected %v with delta %v, but was NaN", expected, delta), msgAndArgs...) + } + + dt := af - bf + if dt < -delta || dt > delta { + return Fail(t, fmt.Sprintf("Max difference between %v and %v allowed is %v, but difference was %v", expected, actual, delta, dt), msgAndArgs...) + } + + return true +} + +// InDeltaSlice is the same as InDelta, except it compares two slices. +func InDeltaSlice(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if expected == nil || actual == nil || + reflect.TypeOf(actual).Kind() != reflect.Slice || + reflect.TypeOf(expected).Kind() != reflect.Slice { + return Fail(t, "Parameters must be slice", msgAndArgs...) + } + + actualSlice := reflect.ValueOf(actual) + expectedSlice := reflect.ValueOf(expected) + + for i := 0; i < actualSlice.Len(); i++ { + result := InDelta(t, actualSlice.Index(i).Interface(), expectedSlice.Index(i).Interface(), delta, msgAndArgs...) + if !result { + return result + } + } + + return true +} + +// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func InDeltaMapValues(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if expected == nil || actual == nil || + reflect.TypeOf(actual).Kind() != reflect.Map || + reflect.TypeOf(expected).Kind() != reflect.Map { + return Fail(t, "Arguments must be maps", msgAndArgs...) + } + + expectedMap := reflect.ValueOf(expected) + actualMap := reflect.ValueOf(actual) + + if expectedMap.Len() != actualMap.Len() { + return Fail(t, "Arguments must have the same number of keys", msgAndArgs...) + } + + for _, k := range expectedMap.MapKeys() { + ev := expectedMap.MapIndex(k) + av := actualMap.MapIndex(k) + + if !ev.IsValid() { + return Fail(t, fmt.Sprintf("missing key %q in expected map", k), msgAndArgs...) + } + + if !av.IsValid() { + return Fail(t, fmt.Sprintf("missing key %q in actual map", k), msgAndArgs...) + } + + if !InDelta( + t, + ev.Interface(), + av.Interface(), + delta, + msgAndArgs..., + ) { + return false + } + } + + return true +} + +func calcRelativeError(expected, actual interface{}) (float64, error) { + af, aok := toFloat(expected) + bf, bok := toFloat(actual) + if !aok || !bok { + return 0, fmt.Errorf("Parameters must be numerical") + } + if math.IsNaN(af) && math.IsNaN(bf) { + return 0, nil + } + if math.IsNaN(af) { + return 0, errors.New("expected value must not be NaN") + } + if af == 0 { + return 0, fmt.Errorf("expected value must have a value other than zero to calculate the relative error") + } + if math.IsNaN(bf) { + return 0, errors.New("actual value must not be NaN") + } + + return math.Abs(af-bf) / math.Abs(af), nil +} + +// InEpsilon asserts that expected and actual have a relative error less than epsilon +func InEpsilon(t TestingT, expected, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if math.IsNaN(epsilon) { + return Fail(t, "epsilon must not be NaN", msgAndArgs...) + } + actualEpsilon, err := calcRelativeError(expected, actual) + if err != nil { + return Fail(t, err.Error(), msgAndArgs...) + } + if math.IsNaN(actualEpsilon) { + return Fail(t, "relative error is NaN", msgAndArgs...) + } + if actualEpsilon > epsilon { + return Fail(t, fmt.Sprintf("Relative error is too high: %#v (expected)\n"+ + " < %#v (actual)", epsilon, actualEpsilon), msgAndArgs...) + } + + return true +} + +// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. +func InEpsilonSlice(t TestingT, expected, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + if expected == nil || actual == nil { + return Fail(t, "Parameters must be slice", msgAndArgs...) + } + + expectedSlice := reflect.ValueOf(expected) + actualSlice := reflect.ValueOf(actual) + + if expectedSlice.Type().Kind() != reflect.Slice { + return Fail(t, "Expected value must be slice", msgAndArgs...) + } + + expectedLen := expectedSlice.Len() + if !IsType(t, expected, actual) || !Len(t, actual, expectedLen) { + return false + } + + for i := 0; i < expectedLen; i++ { + if !InEpsilon(t, expectedSlice.Index(i).Interface(), actualSlice.Index(i).Interface(), epsilon, "at index %d", i) { + return false + } + } + + return true +} + +/* + Errors +*/ + +// NoError asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if assert.NoError(t, err) { +// assert.Equal(t, expectedObj, actualObj) +// } +func NoError(t TestingT, err error, msgAndArgs ...interface{}) bool { + if err != nil { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, fmt.Sprintf("Received unexpected error:\n%+v", err), msgAndArgs...) + } + + return true +} + +// Error asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// assert.Error(t, err) +func Error(t TestingT, err error, msgAndArgs ...interface{}) bool { + if err == nil { + if h, ok := t.(tHelper); ok { + h.Helper() + } + return Fail(t, "An error is expected but got nil.", msgAndArgs...) + } + + return true +} + +// EqualError asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// assert.EqualError(t, err, expectedErrorString) +func EqualError(t TestingT, theError error, errString string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if !Error(t, theError, msgAndArgs...) { + return false + } + expected := errString + actual := theError.Error() + // don't need to use deep equals here, we know they are both strings + if expected != actual { + return Fail(t, fmt.Sprintf("Error message not equal:\n"+ + "expected: %q\n"+ + "actual : %q", expected, actual), msgAndArgs...) + } + return true +} + +// ErrorContains asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// assert.ErrorContains(t, err, expectedErrorSubString) +func ErrorContains(t TestingT, theError error, contains string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if !Error(t, theError, msgAndArgs...) { + return false + } + + actual := theError.Error() + if !strings.Contains(actual, contains) { + return Fail(t, fmt.Sprintf("Error %#v does not contain %#v", actual, contains), msgAndArgs...) + } + + return true +} + +// matchRegexp return true if a specified regexp matches a string. +func matchRegexp(rx interface{}, str interface{}) bool { + var r *regexp.Regexp + if rr, ok := rx.(*regexp.Regexp); ok { + r = rr + } else { + r = regexp.MustCompile(fmt.Sprint(rx)) + } + + switch v := str.(type) { + case []byte: + return r.Match(v) + case string: + return r.MatchString(v) + default: + return r.MatchString(fmt.Sprint(v)) + } +} + +// Regexp asserts that a specified regexp matches a string. +// +// assert.Regexp(t, regexp.MustCompile("start"), "it's starting") +// assert.Regexp(t, "start...$", "it's not starting") +func Regexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + match := matchRegexp(rx, str) + + if !match { + Fail(t, fmt.Sprintf("Expect \"%v\" to match \"%v\"", str, rx), msgAndArgs...) + } + + return match +} + +// NotRegexp asserts that a specified regexp does not match a string. +// +// assert.NotRegexp(t, regexp.MustCompile("starts"), "it's starting") +// assert.NotRegexp(t, "^start", "it's not starting") +func NotRegexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + match := matchRegexp(rx, str) + + if match { + Fail(t, fmt.Sprintf("Expect \"%v\" to NOT match \"%v\"", str, rx), msgAndArgs...) + } + + return !match +} + +// Zero asserts that i is the zero value for its type. +func Zero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if i != nil && !reflect.DeepEqual(i, reflect.Zero(reflect.TypeOf(i)).Interface()) { + return Fail(t, fmt.Sprintf("Should be zero, but was %v", i), msgAndArgs...) + } + return true +} + +// NotZero asserts that i is not the zero value for its type. +func NotZero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if i == nil || reflect.DeepEqual(i, reflect.Zero(reflect.TypeOf(i)).Interface()) { + return Fail(t, fmt.Sprintf("Should not be zero, but was %v", i), msgAndArgs...) + } + return true +} + +// FileExists checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func FileExists(t TestingT, path string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + info, err := os.Lstat(path) + if err != nil { + if os.IsNotExist(err) { + return Fail(t, fmt.Sprintf("unable to find file %q", path), msgAndArgs...) + } + return Fail(t, fmt.Sprintf("error when running os.Lstat(%q): %s", path, err), msgAndArgs...) + } + if info.IsDir() { + return Fail(t, fmt.Sprintf("%q is a directory", path), msgAndArgs...) + } + return true +} + +// NoFileExists checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func NoFileExists(t TestingT, path string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + info, err := os.Lstat(path) + if err != nil { + return true + } + if info.IsDir() { + return true + } + return Fail(t, fmt.Sprintf("file %q exists", path), msgAndArgs...) +} + +// DirExists checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func DirExists(t TestingT, path string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + info, err := os.Lstat(path) + if err != nil { + if os.IsNotExist(err) { + return Fail(t, fmt.Sprintf("unable to find file %q", path), msgAndArgs...) + } + return Fail(t, fmt.Sprintf("error when running os.Lstat(%q): %s", path, err), msgAndArgs...) + } + if !info.IsDir() { + return Fail(t, fmt.Sprintf("%q is a file", path), msgAndArgs...) + } + return true +} + +// NoDirExists checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func NoDirExists(t TestingT, path string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + info, err := os.Lstat(path) + if err != nil { + if os.IsNotExist(err) { + return true + } + return true + } + if !info.IsDir() { + return true + } + return Fail(t, fmt.Sprintf("directory %q exists", path), msgAndArgs...) +} + +// JSONEq asserts that two JSON strings are equivalent. +// +// assert.JSONEq(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) +func JSONEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + var expectedJSONAsInterface, actualJSONAsInterface interface{} + + if err := json.Unmarshal([]byte(expected), &expectedJSONAsInterface); err != nil { + return Fail(t, fmt.Sprintf("Expected value ('%s') is not valid json.\nJSON parsing error: '%s'", expected, err.Error()), msgAndArgs...) + } + + // Shortcut if same bytes + if actual == expected { + return true + } + + if err := json.Unmarshal([]byte(actual), &actualJSONAsInterface); err != nil { + return Fail(t, fmt.Sprintf("Input ('%s') needs to be valid json.\nJSON parsing error: '%s'", actual, err.Error()), msgAndArgs...) + } + + return Equal(t, expectedJSONAsInterface, actualJSONAsInterface, msgAndArgs...) +} + +// YAMLEq asserts that two YAML strings are equivalent. +func YAMLEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + var expectedYAMLAsInterface, actualYAMLAsInterface interface{} + + if err := yaml.Unmarshal([]byte(expected), &expectedYAMLAsInterface); err != nil { + return Fail(t, fmt.Sprintf("Expected value ('%s') is not valid yaml.\nYAML parsing error: '%s'", expected, err.Error()), msgAndArgs...) + } + + // Shortcut if same bytes + if actual == expected { + return true + } + + if err := yaml.Unmarshal([]byte(actual), &actualYAMLAsInterface); err != nil { + return Fail(t, fmt.Sprintf("Input ('%s') needs to be valid yaml.\nYAML error: '%s'", actual, err.Error()), msgAndArgs...) + } + + return Equal(t, expectedYAMLAsInterface, actualYAMLAsInterface, msgAndArgs...) +} + +func typeAndKind(v interface{}) (reflect.Type, reflect.Kind) { + t := reflect.TypeOf(v) + k := t.Kind() + + if k == reflect.Ptr { + t = t.Elem() + k = t.Kind() + } + return t, k +} + +// diff returns a diff of both values as long as both are of the same type and +// are a struct, map, slice, array or string. Otherwise it returns an empty string. +func diff(expected interface{}, actual interface{}) string { + if expected == nil || actual == nil { + return "" + } + + et, ek := typeAndKind(expected) + at, _ := typeAndKind(actual) + + if et != at { + return "" + } + + if ek != reflect.Struct && ek != reflect.Map && ek != reflect.Slice && ek != reflect.Array && ek != reflect.String { + return "" + } + + var e, a string + + switch et { + case reflect.TypeOf(""): + e = reflect.ValueOf(expected).String() + a = reflect.ValueOf(actual).String() + case reflect.TypeOf(time.Time{}): + e = spewConfigStringerEnabled.Sdump(expected) + a = spewConfigStringerEnabled.Sdump(actual) + default: + e = spewConfig.Sdump(expected) + a = spewConfig.Sdump(actual) + } + + diff, _ := difflib.GetUnifiedDiffString(difflib.UnifiedDiff{ + A: difflib.SplitLines(e), + B: difflib.SplitLines(a), + FromFile: "Expected", + FromDate: "", + ToFile: "Actual", + ToDate: "", + Context: 1, + }) + + return "\n\nDiff:\n" + diff +} + +func isFunction(arg interface{}) bool { + if arg == nil { + return false + } + return reflect.TypeOf(arg).Kind() == reflect.Func +} + +var spewConfig = spew.ConfigState{ + Indent: " ", + DisablePointerAddresses: true, + DisableCapacities: true, + SortKeys: true, + DisableMethods: true, + MaxDepth: 10, +} + +var spewConfigStringerEnabled = spew.ConfigState{ + Indent: " ", + DisablePointerAddresses: true, + DisableCapacities: true, + SortKeys: true, + MaxDepth: 10, +} + +type tHelper = interface { + Helper() +} + +// Eventually asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// assert.Eventually(t, func() bool { return true; }, time.Second, 10*time.Millisecond) +func Eventually(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + ch := make(chan bool, 1) + checkCond := func() { ch <- condition() } + + timer := time.NewTimer(waitFor) + defer timer.Stop() + + ticker := time.NewTicker(tick) + defer ticker.Stop() + + var tickC <-chan time.Time + + // Check the condition once first on the initial call. + go checkCond() + + for { + select { + case <-timer.C: + return Fail(t, "Condition never satisfied", msgAndArgs...) + case <-tickC: + tickC = nil + go checkCond() + case v := <-ch: + if v { + return true + } + tickC = ticker.C + } + } +} + +// CollectT implements the TestingT interface and collects all errors. +type CollectT struct { + // A slice of errors. Non-nil slice denotes a failure. + // If it's non-nil but len(c.errors) == 0, this is also a failure + // obtained by direct c.FailNow() call. + errors []error +} + +// Helper is like [testing.T.Helper] but does nothing. +func (CollectT) Helper() {} + +// Errorf collects the error. +func (c *CollectT) Errorf(format string, args ...interface{}) { + c.errors = append(c.errors, fmt.Errorf(format, args...)) +} + +// FailNow stops execution by calling runtime.Goexit. +func (c *CollectT) FailNow() { + c.fail() + runtime.Goexit() +} + +// Deprecated: That was a method for internal usage that should not have been published. Now just panics. +func (*CollectT) Reset() { + panic("Reset() is deprecated") +} + +// Deprecated: That was a method for internal usage that should not have been published. Now just panics. +func (*CollectT) Copy(TestingT) { + panic("Copy() is deprecated") +} + +func (c *CollectT) fail() { + if !c.failed() { + c.errors = []error{} // Make it non-nil to mark a failure. + } +} + +func (c *CollectT) failed() bool { + return c.errors != nil +} + +// EventuallyWithT asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// assert.EventuallyWithT(t, func(c *assert.CollectT) { +// // add assertions as needed; any assertion failure will fail the current tick +// assert.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func EventuallyWithT(t TestingT, condition func(collect *CollectT), waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + var lastFinishedTickErrs []error + ch := make(chan *CollectT, 1) + + checkCond := func() { + collect := new(CollectT) + defer func() { + ch <- collect + }() + condition(collect) + } + + timer := time.NewTimer(waitFor) + defer timer.Stop() + + ticker := time.NewTicker(tick) + defer ticker.Stop() + + var tickC <-chan time.Time + + // Check the condition once first on the initial call. + go checkCond() + + for { + select { + case <-timer.C: + for _, err := range lastFinishedTickErrs { + t.Errorf("%v", err) + } + return Fail(t, "Condition never satisfied", msgAndArgs...) + case <-tickC: + tickC = nil + go checkCond() + case collect := <-ch: + if !collect.failed() { + return true + } + // Keep the errors from the last ended condition, so that they can be copied to t if timeout is reached. + lastFinishedTickErrs = collect.errors + tickC = ticker.C + } + } +} + +// Never asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// assert.Never(t, func() bool { return false; }, time.Second, 10*time.Millisecond) +func Never(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + + ch := make(chan bool, 1) + checkCond := func() { ch <- condition() } + + timer := time.NewTimer(waitFor) + defer timer.Stop() + + ticker := time.NewTicker(tick) + defer ticker.Stop() + + var tickC <-chan time.Time + + // Check the condition once first on the initial call. + go checkCond() + + for { + select { + case <-timer.C: + return true + case <-tickC: + tickC = nil + go checkCond() + case v := <-ch: + if v { + return Fail(t, "Condition satisfied", msgAndArgs...) + } + tickC = ticker.C + } + } +} + +// ErrorIs asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func ErrorIs(t TestingT, err, target error, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if errors.Is(err, target) { + return true + } + + var expectedText string + if target != nil { + expectedText = target.Error() + if err == nil { + return Fail(t, fmt.Sprintf("Expected error with %q in chain but got nil.", expectedText), msgAndArgs...) + } + } + + chain := buildErrorChainString(err, false) + + return Fail(t, fmt.Sprintf("Target error should be in err chain:\n"+ + "expected: %q\n"+ + "in chain: %s", expectedText, chain, + ), msgAndArgs...) +} + +// NotErrorIs asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func NotErrorIs(t TestingT, err, target error, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if !errors.Is(err, target) { + return true + } + + var expectedText string + if target != nil { + expectedText = target.Error() + } + + chain := buildErrorChainString(err, false) + + return Fail(t, fmt.Sprintf("Target error should not be in err chain:\n"+ + "found: %q\n"+ + "in chain: %s", expectedText, chain, + ), msgAndArgs...) +} + +// ErrorAs asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func ErrorAs(t TestingT, err error, target interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if errors.As(err, target) { + return true + } + + expectedType := reflect.TypeOf(target).Elem().String() + if err == nil { + return Fail(t, fmt.Sprintf("An error is expected but got nil.\n"+ + "expected: %s", expectedType), msgAndArgs...) + } + + chain := buildErrorChainString(err, true) + + return Fail(t, fmt.Sprintf("Should be in error chain:\n"+ + "expected: %s\n"+ + "in chain: %s", expectedType, chain, + ), msgAndArgs...) +} + +// NotErrorAs asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func NotErrorAs(t TestingT, err error, target interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if !errors.As(err, target) { + return true + } + + chain := buildErrorChainString(err, true) + + return Fail(t, fmt.Sprintf("Target error should not be in err chain:\n"+ + "found: %s\n"+ + "in chain: %s", reflect.TypeOf(target).Elem().String(), chain, + ), msgAndArgs...) +} + +func unwrapAll(err error) (errs []error) { + errs = append(errs, err) + switch x := err.(type) { + case interface{ Unwrap() error }: + err = x.Unwrap() + if err == nil { + return + } + errs = append(errs, unwrapAll(err)...) + case interface{ Unwrap() []error }: + for _, err := range x.Unwrap() { + errs = append(errs, unwrapAll(err)...) + } + } + return +} + +func buildErrorChainString(err error, withType bool) string { + if err == nil { + return "" + } + + var chain string + errs := unwrapAll(err) + for i := range errs { + if i != 0 { + chain += "\n\t" + } + chain += fmt.Sprintf("%q", errs[i].Error()) + if withType { + chain += fmt.Sprintf(" (%T)", errs[i]) + } + } + return chain +} diff --git a/vendor/github.com/stretchr/testify/assert/doc.go b/vendor/github.com/stretchr/testify/assert/doc.go new file mode 100644 index 00000000..a0b953aa --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/doc.go @@ -0,0 +1,50 @@ +// Package assert provides a set of comprehensive testing tools for use with the normal Go testing system. +// +// # Note +// +// All functions in this package return a bool value indicating whether the assertion has passed. +// +// # Example Usage +// +// The following is a complete example using assert in a standard test function: +// +// import ( +// "testing" +// "github.com/stretchr/testify/assert" +// ) +// +// func TestSomething(t *testing.T) { +// +// var a string = "Hello" +// var b string = "Hello" +// +// assert.Equal(t, a, b, "The two words should be the same.") +// +// } +// +// if you assert many times, use the format below: +// +// import ( +// "testing" +// "github.com/stretchr/testify/assert" +// ) +// +// func TestSomething(t *testing.T) { +// assert := assert.New(t) +// +// var a string = "Hello" +// var b string = "Hello" +// +// assert.Equal(a, b, "The two words should be the same.") +// } +// +// # Assertions +// +// Assertions allow you to easily write test code, and are global funcs in the `assert` package. +// All assertion functions take, as the first argument, the `*testing.T` object provided by the +// testing framework. This allows the assertion funcs to write the failings and other details to +// the correct place. +// +// Every assertion function also takes an optional string message as the final argument, +// allowing custom error messages to be appended to the message the assertion method outputs. +package assert diff --git a/vendor/github.com/stretchr/testify/assert/errors.go b/vendor/github.com/stretchr/testify/assert/errors.go new file mode 100644 index 00000000..ac9dc9d1 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/errors.go @@ -0,0 +1,10 @@ +package assert + +import ( + "errors" +) + +// AnError is an error instance useful for testing. If the code does not care +// about error specifics, and only needs to return the error for example, this +// error should be used to make the test code more readable. +var AnError = errors.New("assert.AnError general error for testing") diff --git a/vendor/github.com/stretchr/testify/assert/forward_assertions.go b/vendor/github.com/stretchr/testify/assert/forward_assertions.go new file mode 100644 index 00000000..df189d23 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/forward_assertions.go @@ -0,0 +1,16 @@ +package assert + +// Assertions provides assertion methods around the +// TestingT interface. +type Assertions struct { + t TestingT +} + +// New makes a new Assertions object for the specified TestingT. +func New(t TestingT) *Assertions { + return &Assertions{ + t: t, + } +} + +//go:generate sh -c "cd ../_codegen && go build && cd - && ../_codegen/_codegen -output-package=assert -template=assertion_forward.go.tmpl -include-format-funcs" diff --git a/vendor/github.com/stretchr/testify/assert/http_assertions.go b/vendor/github.com/stretchr/testify/assert/http_assertions.go new file mode 100644 index 00000000..5a6bb75f --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/http_assertions.go @@ -0,0 +1,165 @@ +package assert + +import ( + "fmt" + "net/http" + "net/http/httptest" + "net/url" + "strings" +) + +// httpCode is a helper that returns HTTP code of the response. It returns -1 and +// an error if building a new request fails. +func httpCode(handler http.HandlerFunc, method, url string, values url.Values) (int, error) { + w := httptest.NewRecorder() + req, err := http.NewRequest(method, url, http.NoBody) + if err != nil { + return -1, err + } + req.URL.RawQuery = values.Encode() + handler(w, req) + return w.Code, nil +} + +// HTTPSuccess asserts that a specified handler returns a success status code. +// +// assert.HTTPSuccess(t, myHandler, "POST", "http://www.google.com", nil) +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPSuccess(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + code, err := httpCode(handler, method, url, values) + if err != nil { + Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err), msgAndArgs...) + } + + isSuccessCode := code >= http.StatusOK && code <= http.StatusPartialContent + if !isSuccessCode { + Fail(t, fmt.Sprintf("Expected HTTP success status code for %q but received %d", url+"?"+values.Encode(), code), msgAndArgs...) + } + + return isSuccessCode +} + +// HTTPRedirect asserts that a specified handler returns a redirect status code. +// +// assert.HTTPRedirect(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPRedirect(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + code, err := httpCode(handler, method, url, values) + if err != nil { + Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err), msgAndArgs...) + } + + isRedirectCode := code >= http.StatusMultipleChoices && code <= http.StatusTemporaryRedirect + if !isRedirectCode { + Fail(t, fmt.Sprintf("Expected HTTP redirect status code for %q but received %d", url+"?"+values.Encode(), code), msgAndArgs...) + } + + return isRedirectCode +} + +// HTTPError asserts that a specified handler returns an error status code. +// +// assert.HTTPError(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPError(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + code, err := httpCode(handler, method, url, values) + if err != nil { + Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err), msgAndArgs...) + } + + isErrorCode := code >= http.StatusBadRequest + if !isErrorCode { + Fail(t, fmt.Sprintf("Expected HTTP error status code for %q but received %d", url+"?"+values.Encode(), code), msgAndArgs...) + } + + return isErrorCode +} + +// HTTPStatusCode asserts that a specified handler returns a specified status code. +// +// assert.HTTPStatusCode(t, myHandler, "GET", "/notImplemented", nil, 501) +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPStatusCode(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, statuscode int, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + code, err := httpCode(handler, method, url, values) + if err != nil { + Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err), msgAndArgs...) + } + + successful := code == statuscode + if !successful { + Fail(t, fmt.Sprintf("Expected HTTP status code %d for %q but received %d", statuscode, url+"?"+values.Encode(), code), msgAndArgs...) + } + + return successful +} + +// HTTPBody is a helper that returns HTTP body of the response. It returns +// empty string if building a new request fails. +func HTTPBody(handler http.HandlerFunc, method, url string, values url.Values) string { + w := httptest.NewRecorder() + if len(values) > 0 { + url += "?" + values.Encode() + } + req, err := http.NewRequest(method, url, http.NoBody) + if err != nil { + return "" + } + handler(w, req) + return w.Body.String() +} + +// HTTPBodyContains asserts that a specified handler returns a +// body that contains a string. +// +// assert.HTTPBodyContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyContains(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + body := HTTPBody(handler, method, url, values) + + contains := strings.Contains(body, fmt.Sprint(str)) + if !contains { + Fail(t, fmt.Sprintf("Expected response body for %q to contain %q but found %q", url+"?"+values.Encode(), str, body), msgAndArgs...) + } + + return contains +} + +// HTTPBodyNotContains asserts that a specified handler returns a +// body that does not contain a string. +// +// assert.HTTPBodyNotContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyNotContains(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { + if h, ok := t.(tHelper); ok { + h.Helper() + } + body := HTTPBody(handler, method, url, values) + + contains := strings.Contains(body, fmt.Sprint(str)) + if contains { + Fail(t, fmt.Sprintf("Expected response body for %q to NOT contain %q but found %q", url+"?"+values.Encode(), str, body), msgAndArgs...) + } + + return !contains +} diff --git a/vendor/github.com/stretchr/testify/assert/yaml/yaml_custom.go b/vendor/github.com/stretchr/testify/assert/yaml/yaml_custom.go new file mode 100644 index 00000000..5a74c4f4 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/yaml/yaml_custom.go @@ -0,0 +1,24 @@ +//go:build testify_yaml_custom && !testify_yaml_fail && !testify_yaml_default + +// Package yaml is an implementation of YAML functions that calls a pluggable implementation. +// +// This implementation is selected with the testify_yaml_custom build tag. +// +// go test -tags testify_yaml_custom +// +// This implementation can be used at build time to replace the default implementation +// to avoid linking with [gopkg.in/yaml.v3]. +// +// In your test package: +// +// import assertYaml "github.com/stretchr/testify/assert/yaml" +// +// func init() { +// assertYaml.Unmarshal = func (in []byte, out interface{}) error { +// // ... +// return nil +// } +// } +package yaml + +var Unmarshal func(in []byte, out interface{}) error diff --git a/vendor/github.com/stretchr/testify/assert/yaml/yaml_default.go b/vendor/github.com/stretchr/testify/assert/yaml/yaml_default.go new file mode 100644 index 00000000..0bae80e3 --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/yaml/yaml_default.go @@ -0,0 +1,36 @@ +//go:build !testify_yaml_fail && !testify_yaml_custom + +// Package yaml is just an indirection to handle YAML deserialization. +// +// This package is just an indirection that allows the builder to override the +// indirection with an alternative implementation of this package that uses +// another implementation of YAML deserialization. This allows to not either not +// use YAML deserialization at all, or to use another implementation than +// [gopkg.in/yaml.v3] (for example for license compatibility reasons, see [PR #1120]). +// +// Alternative implementations are selected using build tags: +// +// - testify_yaml_fail: [Unmarshal] always fails with an error +// - testify_yaml_custom: [Unmarshal] is a variable. Caller must initialize it +// before calling any of [github.com/stretchr/testify/assert.YAMLEq] or +// [github.com/stretchr/testify/assert.YAMLEqf]. +// +// Usage: +// +// go test -tags testify_yaml_fail +// +// You can check with "go list" which implementation is linked: +// +// go list -f '{{.Imports}}' github.com/stretchr/testify/assert/yaml +// go list -tags testify_yaml_fail -f '{{.Imports}}' github.com/stretchr/testify/assert/yaml +// go list -tags testify_yaml_custom -f '{{.Imports}}' github.com/stretchr/testify/assert/yaml +// +// [PR #1120]: https://github.com/stretchr/testify/pull/1120 +package yaml + +import goyaml "gopkg.in/yaml.v3" + +// Unmarshal is just a wrapper of [gopkg.in/yaml.v3.Unmarshal]. +func Unmarshal(in []byte, out interface{}) error { + return goyaml.Unmarshal(in, out) +} diff --git a/vendor/github.com/stretchr/testify/assert/yaml/yaml_fail.go b/vendor/github.com/stretchr/testify/assert/yaml/yaml_fail.go new file mode 100644 index 00000000..8041803f --- /dev/null +++ b/vendor/github.com/stretchr/testify/assert/yaml/yaml_fail.go @@ -0,0 +1,17 @@ +//go:build testify_yaml_fail && !testify_yaml_custom && !testify_yaml_default + +// Package yaml is an implementation of YAML functions that always fail. +// +// This implementation can be used at build time to replace the default implementation +// to avoid linking with [gopkg.in/yaml.v3]: +// +// go test -tags testify_yaml_fail +package yaml + +import "errors" + +var errNotImplemented = errors.New("YAML functions are not available (see https://pkg.go.dev/github.com/stretchr/testify/assert/yaml)") + +func Unmarshal([]byte, interface{}) error { + return errNotImplemented +} diff --git a/vendor/github.com/stretchr/testify/require/doc.go b/vendor/github.com/stretchr/testify/require/doc.go new file mode 100644 index 00000000..c8e3f94a --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/doc.go @@ -0,0 +1,31 @@ +// Package require implements the same assertions as the `assert` package but +// stops test execution when a test fails. +// +// # Example Usage +// +// The following is a complete example using require in a standard test function: +// +// import ( +// "testing" +// "github.com/stretchr/testify/require" +// ) +// +// func TestSomething(t *testing.T) { +// +// var a string = "Hello" +// var b string = "Hello" +// +// require.Equal(t, a, b, "The two words should be the same.") +// +// } +// +// # Assertions +// +// The `require` package have same global functions as in the `assert` package, +// but instead of returning a boolean result they call `t.FailNow()`. +// A consequence of this is that it must be called from the goroutine running +// the test function, not from other goroutines created during the test. +// +// Every assertion function also takes an optional string message as the final argument, +// allowing custom error messages to be appended to the message the assertion method outputs. +package require diff --git a/vendor/github.com/stretchr/testify/require/forward_requirements.go b/vendor/github.com/stretchr/testify/require/forward_requirements.go new file mode 100644 index 00000000..1dcb2338 --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/forward_requirements.go @@ -0,0 +1,16 @@ +package require + +// Assertions provides assertion methods around the +// TestingT interface. +type Assertions struct { + t TestingT +} + +// New makes a new Assertions object for the specified TestingT. +func New(t TestingT) *Assertions { + return &Assertions{ + t: t, + } +} + +//go:generate sh -c "cd ../_codegen && go build && cd - && ../_codegen/_codegen -output-package=require -template=require_forward.go.tmpl -include-format-funcs" diff --git a/vendor/github.com/stretchr/testify/require/require.go b/vendor/github.com/stretchr/testify/require/require.go new file mode 100644 index 00000000..2d02f9bc --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/require.go @@ -0,0 +1,2180 @@ +// Code generated with github.com/stretchr/testify/_codegen; DO NOT EDIT. + +package require + +import ( + assert "github.com/stretchr/testify/assert" + http "net/http" + url "net/url" + time "time" +) + +// Condition uses a Comparison to assert a complex condition. +func Condition(t TestingT, comp assert.Comparison, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Condition(t, comp, msgAndArgs...) { + return + } + t.FailNow() +} + +// Conditionf uses a Comparison to assert a complex condition. +func Conditionf(t TestingT, comp assert.Comparison, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Conditionf(t, comp, msg, args...) { + return + } + t.FailNow() +} + +// Contains asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// require.Contains(t, "Hello World", "World") +// require.Contains(t, ["Hello", "World"], "World") +// require.Contains(t, {"Hello": "World"}, "Hello") +func Contains(t TestingT, s interface{}, contains interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Contains(t, s, contains, msgAndArgs...) { + return + } + t.FailNow() +} + +// Containsf asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// require.Containsf(t, "Hello World", "World", "error message %s", "formatted") +// require.Containsf(t, ["Hello", "World"], "World", "error message %s", "formatted") +// require.Containsf(t, {"Hello": "World"}, "Hello", "error message %s", "formatted") +func Containsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Containsf(t, s, contains, msg, args...) { + return + } + t.FailNow() +} + +// DirExists checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func DirExists(t TestingT, path string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.DirExists(t, path, msgAndArgs...) { + return + } + t.FailNow() +} + +// DirExistsf checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func DirExistsf(t TestingT, path string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.DirExistsf(t, path, msg, args...) { + return + } + t.FailNow() +} + +// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// require.ElementsMatch(t, [1, 3, 2, 3], [1, 3, 3, 2]) +func ElementsMatch(t TestingT, listA interface{}, listB interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ElementsMatch(t, listA, listB, msgAndArgs...) { + return + } + t.FailNow() +} + +// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// require.ElementsMatchf(t, [1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") +func ElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ElementsMatchf(t, listA, listB, msg, args...) { + return + } + t.FailNow() +} + +// Empty asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// require.Empty(t, obj) +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func Empty(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Empty(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// Emptyf asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// require.Emptyf(t, obj, "error message %s", "formatted") +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func Emptyf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Emptyf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// Equal asserts that two objects are equal. +// +// require.Equal(t, 123, 123) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func Equal(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Equal(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// EqualError asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// require.EqualError(t, err, expectedErrorString) +func EqualError(t TestingT, theError error, errString string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EqualError(t, theError, errString, msgAndArgs...) { + return + } + t.FailNow() +} + +// EqualErrorf asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// require.EqualErrorf(t, err, expectedErrorString, "error message %s", "formatted") +func EqualErrorf(t TestingT, theError error, errString string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EqualErrorf(t, theError, errString, msg, args...) { + return + } + t.FailNow() +} + +// EqualExportedValues asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// require.EqualExportedValues(t, S{1, 2}, S{1, 3}) => true +// require.EqualExportedValues(t, S{1, 2}, S{2, 3}) => false +func EqualExportedValues(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EqualExportedValues(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// EqualExportedValuesf asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// require.EqualExportedValuesf(t, S{1, 2}, S{1, 3}, "error message %s", "formatted") => true +// require.EqualExportedValuesf(t, S{1, 2}, S{2, 3}, "error message %s", "formatted") => false +func EqualExportedValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EqualExportedValuesf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// EqualValues asserts that two objects are equal or convertible to the larger +// type and equal. +// +// require.EqualValues(t, uint32(123), int32(123)) +func EqualValues(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EqualValues(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// EqualValuesf asserts that two objects are equal or convertible to the larger +// type and equal. +// +// require.EqualValuesf(t, uint32(123), int32(123), "error message %s", "formatted") +func EqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EqualValuesf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// Equalf asserts that two objects are equal. +// +// require.Equalf(t, 123, 123, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func Equalf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Equalf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// Error asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// require.Error(t, err) +func Error(t TestingT, err error, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Error(t, err, msgAndArgs...) { + return + } + t.FailNow() +} + +// ErrorAs asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func ErrorAs(t TestingT, err error, target interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ErrorAs(t, err, target, msgAndArgs...) { + return + } + t.FailNow() +} + +// ErrorAsf asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func ErrorAsf(t TestingT, err error, target interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ErrorAsf(t, err, target, msg, args...) { + return + } + t.FailNow() +} + +// ErrorContains asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// require.ErrorContains(t, err, expectedErrorSubString) +func ErrorContains(t TestingT, theError error, contains string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ErrorContains(t, theError, contains, msgAndArgs...) { + return + } + t.FailNow() +} + +// ErrorContainsf asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// require.ErrorContainsf(t, err, expectedErrorSubString, "error message %s", "formatted") +func ErrorContainsf(t TestingT, theError error, contains string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ErrorContainsf(t, theError, contains, msg, args...) { + return + } + t.FailNow() +} + +// ErrorIs asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func ErrorIs(t TestingT, err error, target error, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ErrorIs(t, err, target, msgAndArgs...) { + return + } + t.FailNow() +} + +// ErrorIsf asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func ErrorIsf(t TestingT, err error, target error, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.ErrorIsf(t, err, target, msg, args...) { + return + } + t.FailNow() +} + +// Errorf asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// require.Errorf(t, err, "error message %s", "formatted") +func Errorf(t TestingT, err error, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Errorf(t, err, msg, args...) { + return + } + t.FailNow() +} + +// Eventually asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// require.Eventually(t, func() bool { return true; }, time.Second, 10*time.Millisecond) +func Eventually(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Eventually(t, condition, waitFor, tick, msgAndArgs...) { + return + } + t.FailNow() +} + +// EventuallyWithT asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// require.EventuallyWithT(t, func(c *require.CollectT) { +// // add assertions as needed; any assertion failure will fail the current tick +// require.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func EventuallyWithT(t TestingT, condition func(collect *assert.CollectT), waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EventuallyWithT(t, condition, waitFor, tick, msgAndArgs...) { + return + } + t.FailNow() +} + +// EventuallyWithTf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// require.EventuallyWithTf(t, func(c *require.CollectT, "error message %s", "formatted") { +// // add assertions as needed; any assertion failure will fail the current tick +// require.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func EventuallyWithTf(t TestingT, condition func(collect *assert.CollectT), waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.EventuallyWithTf(t, condition, waitFor, tick, msg, args...) { + return + } + t.FailNow() +} + +// Eventuallyf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// require.Eventuallyf(t, func() bool { return true; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func Eventuallyf(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Eventuallyf(t, condition, waitFor, tick, msg, args...) { + return + } + t.FailNow() +} + +// Exactly asserts that two objects are equal in value and type. +// +// require.Exactly(t, int32(123), int64(123)) +func Exactly(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Exactly(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// Exactlyf asserts that two objects are equal in value and type. +// +// require.Exactlyf(t, int32(123), int64(123), "error message %s", "formatted") +func Exactlyf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Exactlyf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// Fail reports a failure through +func Fail(t TestingT, failureMessage string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Fail(t, failureMessage, msgAndArgs...) { + return + } + t.FailNow() +} + +// FailNow fails test +func FailNow(t TestingT, failureMessage string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.FailNow(t, failureMessage, msgAndArgs...) { + return + } + t.FailNow() +} + +// FailNowf fails test +func FailNowf(t TestingT, failureMessage string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.FailNowf(t, failureMessage, msg, args...) { + return + } + t.FailNow() +} + +// Failf reports a failure through +func Failf(t TestingT, failureMessage string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Failf(t, failureMessage, msg, args...) { + return + } + t.FailNow() +} + +// False asserts that the specified value is false. +// +// require.False(t, myBool) +func False(t TestingT, value bool, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.False(t, value, msgAndArgs...) { + return + } + t.FailNow() +} + +// Falsef asserts that the specified value is false. +// +// require.Falsef(t, myBool, "error message %s", "formatted") +func Falsef(t TestingT, value bool, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Falsef(t, value, msg, args...) { + return + } + t.FailNow() +} + +// FileExists checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func FileExists(t TestingT, path string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.FileExists(t, path, msgAndArgs...) { + return + } + t.FailNow() +} + +// FileExistsf checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func FileExistsf(t TestingT, path string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.FileExistsf(t, path, msg, args...) { + return + } + t.FailNow() +} + +// Greater asserts that the first element is greater than the second +// +// require.Greater(t, 2, 1) +// require.Greater(t, float64(2), float64(1)) +// require.Greater(t, "b", "a") +func Greater(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Greater(t, e1, e2, msgAndArgs...) { + return + } + t.FailNow() +} + +// GreaterOrEqual asserts that the first element is greater than or equal to the second +// +// require.GreaterOrEqual(t, 2, 1) +// require.GreaterOrEqual(t, 2, 2) +// require.GreaterOrEqual(t, "b", "a") +// require.GreaterOrEqual(t, "b", "b") +func GreaterOrEqual(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.GreaterOrEqual(t, e1, e2, msgAndArgs...) { + return + } + t.FailNow() +} + +// GreaterOrEqualf asserts that the first element is greater than or equal to the second +// +// require.GreaterOrEqualf(t, 2, 1, "error message %s", "formatted") +// require.GreaterOrEqualf(t, 2, 2, "error message %s", "formatted") +// require.GreaterOrEqualf(t, "b", "a", "error message %s", "formatted") +// require.GreaterOrEqualf(t, "b", "b", "error message %s", "formatted") +func GreaterOrEqualf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.GreaterOrEqualf(t, e1, e2, msg, args...) { + return + } + t.FailNow() +} + +// Greaterf asserts that the first element is greater than the second +// +// require.Greaterf(t, 2, 1, "error message %s", "formatted") +// require.Greaterf(t, float64(2), float64(1), "error message %s", "formatted") +// require.Greaterf(t, "b", "a", "error message %s", "formatted") +func Greaterf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Greaterf(t, e1, e2, msg, args...) { + return + } + t.FailNow() +} + +// HTTPBodyContains asserts that a specified handler returns a +// body that contains a string. +// +// require.HTTPBodyContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyContains(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPBodyContains(t, handler, method, url, values, str, msgAndArgs...) { + return + } + t.FailNow() +} + +// HTTPBodyContainsf asserts that a specified handler returns a +// body that contains a string. +// +// require.HTTPBodyContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPBodyContainsf(t, handler, method, url, values, str, msg, args...) { + return + } + t.FailNow() +} + +// HTTPBodyNotContains asserts that a specified handler returns a +// body that does not contain a string. +// +// require.HTTPBodyNotContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyNotContains(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPBodyNotContains(t, handler, method, url, values, str, msgAndArgs...) { + return + } + t.FailNow() +} + +// HTTPBodyNotContainsf asserts that a specified handler returns a +// body that does not contain a string. +// +// require.HTTPBodyNotContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPBodyNotContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPBodyNotContainsf(t, handler, method, url, values, str, msg, args...) { + return + } + t.FailNow() +} + +// HTTPError asserts that a specified handler returns an error status code. +// +// require.HTTPError(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPError(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPError(t, handler, method, url, values, msgAndArgs...) { + return + } + t.FailNow() +} + +// HTTPErrorf asserts that a specified handler returns an error status code. +// +// require.HTTPErrorf(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPErrorf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPErrorf(t, handler, method, url, values, msg, args...) { + return + } + t.FailNow() +} + +// HTTPRedirect asserts that a specified handler returns a redirect status code. +// +// require.HTTPRedirect(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPRedirect(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPRedirect(t, handler, method, url, values, msgAndArgs...) { + return + } + t.FailNow() +} + +// HTTPRedirectf asserts that a specified handler returns a redirect status code. +// +// require.HTTPRedirectf(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPRedirectf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPRedirectf(t, handler, method, url, values, msg, args...) { + return + } + t.FailNow() +} + +// HTTPStatusCode asserts that a specified handler returns a specified status code. +// +// require.HTTPStatusCode(t, myHandler, "GET", "/notImplemented", nil, 501) +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPStatusCode(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPStatusCode(t, handler, method, url, values, statuscode, msgAndArgs...) { + return + } + t.FailNow() +} + +// HTTPStatusCodef asserts that a specified handler returns a specified status code. +// +// require.HTTPStatusCodef(t, myHandler, "GET", "/notImplemented", nil, 501, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPStatusCodef(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPStatusCodef(t, handler, method, url, values, statuscode, msg, args...) { + return + } + t.FailNow() +} + +// HTTPSuccess asserts that a specified handler returns a success status code. +// +// require.HTTPSuccess(t, myHandler, "POST", "http://www.google.com", nil) +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPSuccess(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPSuccess(t, handler, method, url, values, msgAndArgs...) { + return + } + t.FailNow() +} + +// HTTPSuccessf asserts that a specified handler returns a success status code. +// +// require.HTTPSuccessf(t, myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func HTTPSuccessf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.HTTPSuccessf(t, handler, method, url, values, msg, args...) { + return + } + t.FailNow() +} + +// Implements asserts that an object is implemented by the specified interface. +// +// require.Implements(t, (*MyInterface)(nil), new(MyObject)) +func Implements(t TestingT, interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Implements(t, interfaceObject, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// Implementsf asserts that an object is implemented by the specified interface. +// +// require.Implementsf(t, (*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func Implementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Implementsf(t, interfaceObject, object, msg, args...) { + return + } + t.FailNow() +} + +// InDelta asserts that the two numerals are within delta of each other. +// +// require.InDelta(t, math.Pi, 22/7.0, 0.01) +func InDelta(t TestingT, expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InDelta(t, expected, actual, delta, msgAndArgs...) { + return + } + t.FailNow() +} + +// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func InDeltaMapValues(t TestingT, expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InDeltaMapValues(t, expected, actual, delta, msgAndArgs...) { + return + } + t.FailNow() +} + +// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func InDeltaMapValuesf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InDeltaMapValuesf(t, expected, actual, delta, msg, args...) { + return + } + t.FailNow() +} + +// InDeltaSlice is the same as InDelta, except it compares two slices. +func InDeltaSlice(t TestingT, expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InDeltaSlice(t, expected, actual, delta, msgAndArgs...) { + return + } + t.FailNow() +} + +// InDeltaSlicef is the same as InDelta, except it compares two slices. +func InDeltaSlicef(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InDeltaSlicef(t, expected, actual, delta, msg, args...) { + return + } + t.FailNow() +} + +// InDeltaf asserts that the two numerals are within delta of each other. +// +// require.InDeltaf(t, math.Pi, 22/7.0, 0.01, "error message %s", "formatted") +func InDeltaf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InDeltaf(t, expected, actual, delta, msg, args...) { + return + } + t.FailNow() +} + +// InEpsilon asserts that expected and actual have a relative error less than epsilon +func InEpsilon(t TestingT, expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InEpsilon(t, expected, actual, epsilon, msgAndArgs...) { + return + } + t.FailNow() +} + +// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. +func InEpsilonSlice(t TestingT, expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InEpsilonSlice(t, expected, actual, epsilon, msgAndArgs...) { + return + } + t.FailNow() +} + +// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. +func InEpsilonSlicef(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InEpsilonSlicef(t, expected, actual, epsilon, msg, args...) { + return + } + t.FailNow() +} + +// InEpsilonf asserts that expected and actual have a relative error less than epsilon +func InEpsilonf(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.InEpsilonf(t, expected, actual, epsilon, msg, args...) { + return + } + t.FailNow() +} + +// IsDecreasing asserts that the collection is decreasing +// +// require.IsDecreasing(t, []int{2, 1, 0}) +// require.IsDecreasing(t, []float{2, 1}) +// require.IsDecreasing(t, []string{"b", "a"}) +func IsDecreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsDecreasing(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// IsDecreasingf asserts that the collection is decreasing +// +// require.IsDecreasingf(t, []int{2, 1, 0}, "error message %s", "formatted") +// require.IsDecreasingf(t, []float{2, 1}, "error message %s", "formatted") +// require.IsDecreasingf(t, []string{"b", "a"}, "error message %s", "formatted") +func IsDecreasingf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsDecreasingf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// IsIncreasing asserts that the collection is increasing +// +// require.IsIncreasing(t, []int{1, 2, 3}) +// require.IsIncreasing(t, []float{1, 2}) +// require.IsIncreasing(t, []string{"a", "b"}) +func IsIncreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsIncreasing(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// IsIncreasingf asserts that the collection is increasing +// +// require.IsIncreasingf(t, []int{1, 2, 3}, "error message %s", "formatted") +// require.IsIncreasingf(t, []float{1, 2}, "error message %s", "formatted") +// require.IsIncreasingf(t, []string{"a", "b"}, "error message %s", "formatted") +func IsIncreasingf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsIncreasingf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// IsNonDecreasing asserts that the collection is not decreasing +// +// require.IsNonDecreasing(t, []int{1, 1, 2}) +// require.IsNonDecreasing(t, []float{1, 2}) +// require.IsNonDecreasing(t, []string{"a", "b"}) +func IsNonDecreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsNonDecreasing(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// IsNonDecreasingf asserts that the collection is not decreasing +// +// require.IsNonDecreasingf(t, []int{1, 1, 2}, "error message %s", "formatted") +// require.IsNonDecreasingf(t, []float{1, 2}, "error message %s", "formatted") +// require.IsNonDecreasingf(t, []string{"a", "b"}, "error message %s", "formatted") +func IsNonDecreasingf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsNonDecreasingf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// IsNonIncreasing asserts that the collection is not increasing +// +// require.IsNonIncreasing(t, []int{2, 1, 1}) +// require.IsNonIncreasing(t, []float{2, 1}) +// require.IsNonIncreasing(t, []string{"b", "a"}) +func IsNonIncreasing(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsNonIncreasing(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// IsNonIncreasingf asserts that the collection is not increasing +// +// require.IsNonIncreasingf(t, []int{2, 1, 1}, "error message %s", "formatted") +// require.IsNonIncreasingf(t, []float{2, 1}, "error message %s", "formatted") +// require.IsNonIncreasingf(t, []string{"b", "a"}, "error message %s", "formatted") +func IsNonIncreasingf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsNonIncreasingf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// IsNotType asserts that the specified objects are not of the same type. +// +// require.IsNotType(t, &NotMyStruct{}, &MyStruct{}) +func IsNotType(t TestingT, theType interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsNotType(t, theType, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// IsNotTypef asserts that the specified objects are not of the same type. +// +// require.IsNotTypef(t, &NotMyStruct{}, &MyStruct{}, "error message %s", "formatted") +func IsNotTypef(t TestingT, theType interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsNotTypef(t, theType, object, msg, args...) { + return + } + t.FailNow() +} + +// IsType asserts that the specified objects are of the same type. +// +// require.IsType(t, &MyStruct{}, &MyStruct{}) +func IsType(t TestingT, expectedType interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsType(t, expectedType, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// IsTypef asserts that the specified objects are of the same type. +// +// require.IsTypef(t, &MyStruct{}, &MyStruct{}, "error message %s", "formatted") +func IsTypef(t TestingT, expectedType interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.IsTypef(t, expectedType, object, msg, args...) { + return + } + t.FailNow() +} + +// JSONEq asserts that two JSON strings are equivalent. +// +// require.JSONEq(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) +func JSONEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.JSONEq(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// JSONEqf asserts that two JSON strings are equivalent. +// +// require.JSONEqf(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") +func JSONEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.JSONEqf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// Len asserts that the specified object has specific length. +// Len also fails if the object has a type that len() not accept. +// +// require.Len(t, mySlice, 3) +func Len(t TestingT, object interface{}, length int, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Len(t, object, length, msgAndArgs...) { + return + } + t.FailNow() +} + +// Lenf asserts that the specified object has specific length. +// Lenf also fails if the object has a type that len() not accept. +// +// require.Lenf(t, mySlice, 3, "error message %s", "formatted") +func Lenf(t TestingT, object interface{}, length int, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Lenf(t, object, length, msg, args...) { + return + } + t.FailNow() +} + +// Less asserts that the first element is less than the second +// +// require.Less(t, 1, 2) +// require.Less(t, float64(1), float64(2)) +// require.Less(t, "a", "b") +func Less(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Less(t, e1, e2, msgAndArgs...) { + return + } + t.FailNow() +} + +// LessOrEqual asserts that the first element is less than or equal to the second +// +// require.LessOrEqual(t, 1, 2) +// require.LessOrEqual(t, 2, 2) +// require.LessOrEqual(t, "a", "b") +// require.LessOrEqual(t, "b", "b") +func LessOrEqual(t TestingT, e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.LessOrEqual(t, e1, e2, msgAndArgs...) { + return + } + t.FailNow() +} + +// LessOrEqualf asserts that the first element is less than or equal to the second +// +// require.LessOrEqualf(t, 1, 2, "error message %s", "formatted") +// require.LessOrEqualf(t, 2, 2, "error message %s", "formatted") +// require.LessOrEqualf(t, "a", "b", "error message %s", "formatted") +// require.LessOrEqualf(t, "b", "b", "error message %s", "formatted") +func LessOrEqualf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.LessOrEqualf(t, e1, e2, msg, args...) { + return + } + t.FailNow() +} + +// Lessf asserts that the first element is less than the second +// +// require.Lessf(t, 1, 2, "error message %s", "formatted") +// require.Lessf(t, float64(1), float64(2), "error message %s", "formatted") +// require.Lessf(t, "a", "b", "error message %s", "formatted") +func Lessf(t TestingT, e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Lessf(t, e1, e2, msg, args...) { + return + } + t.FailNow() +} + +// Negative asserts that the specified element is negative +// +// require.Negative(t, -1) +// require.Negative(t, -1.23) +func Negative(t TestingT, e interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Negative(t, e, msgAndArgs...) { + return + } + t.FailNow() +} + +// Negativef asserts that the specified element is negative +// +// require.Negativef(t, -1, "error message %s", "formatted") +// require.Negativef(t, -1.23, "error message %s", "formatted") +func Negativef(t TestingT, e interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Negativef(t, e, msg, args...) { + return + } + t.FailNow() +} + +// Never asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// require.Never(t, func() bool { return false; }, time.Second, 10*time.Millisecond) +func Never(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Never(t, condition, waitFor, tick, msgAndArgs...) { + return + } + t.FailNow() +} + +// Neverf asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// require.Neverf(t, func() bool { return false; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func Neverf(t TestingT, condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Neverf(t, condition, waitFor, tick, msg, args...) { + return + } + t.FailNow() +} + +// Nil asserts that the specified object is nil. +// +// require.Nil(t, err) +func Nil(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Nil(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// Nilf asserts that the specified object is nil. +// +// require.Nilf(t, err, "error message %s", "formatted") +func Nilf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Nilf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// NoDirExists checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func NoDirExists(t TestingT, path string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NoDirExists(t, path, msgAndArgs...) { + return + } + t.FailNow() +} + +// NoDirExistsf checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func NoDirExistsf(t TestingT, path string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NoDirExistsf(t, path, msg, args...) { + return + } + t.FailNow() +} + +// NoError asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if require.NoError(t, err) { +// require.Equal(t, expectedObj, actualObj) +// } +func NoError(t TestingT, err error, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NoError(t, err, msgAndArgs...) { + return + } + t.FailNow() +} + +// NoErrorf asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if require.NoErrorf(t, err, "error message %s", "formatted") { +// require.Equal(t, expectedObj, actualObj) +// } +func NoErrorf(t TestingT, err error, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NoErrorf(t, err, msg, args...) { + return + } + t.FailNow() +} + +// NoFileExists checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func NoFileExists(t TestingT, path string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NoFileExists(t, path, msgAndArgs...) { + return + } + t.FailNow() +} + +// NoFileExistsf checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func NoFileExistsf(t TestingT, path string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NoFileExistsf(t, path, msg, args...) { + return + } + t.FailNow() +} + +// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// require.NotContains(t, "Hello World", "Earth") +// require.NotContains(t, ["Hello", "World"], "Earth") +// require.NotContains(t, {"Hello": "World"}, "Earth") +func NotContains(t TestingT, s interface{}, contains interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotContains(t, s, contains, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// require.NotContainsf(t, "Hello World", "Earth", "error message %s", "formatted") +// require.NotContainsf(t, ["Hello", "World"], "Earth", "error message %s", "formatted") +// require.NotContainsf(t, {"Hello": "World"}, "Earth", "error message %s", "formatted") +func NotContainsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotContainsf(t, s, contains, msg, args...) { + return + } + t.FailNow() +} + +// NotElementsMatch asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// require.NotElementsMatch(t, [1, 1, 2, 3], [1, 1, 2, 3]) -> false +// +// require.NotElementsMatch(t, [1, 1, 2, 3], [1, 2, 3]) -> true +// +// require.NotElementsMatch(t, [1, 2, 3], [1, 2, 4]) -> true +func NotElementsMatch(t TestingT, listA interface{}, listB interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotElementsMatch(t, listA, listB, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotElementsMatchf asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// require.NotElementsMatchf(t, [1, 1, 2, 3], [1, 1, 2, 3], "error message %s", "formatted") -> false +// +// require.NotElementsMatchf(t, [1, 1, 2, 3], [1, 2, 3], "error message %s", "formatted") -> true +// +// require.NotElementsMatchf(t, [1, 2, 3], [1, 2, 4], "error message %s", "formatted") -> true +func NotElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotElementsMatchf(t, listA, listB, msg, args...) { + return + } + t.FailNow() +} + +// NotEmpty asserts that the specified object is NOT [Empty]. +// +// if require.NotEmpty(t, obj) { +// require.Equal(t, "two", obj[1]) +// } +func NotEmpty(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotEmpty(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotEmptyf asserts that the specified object is NOT [Empty]. +// +// if require.NotEmptyf(t, obj, "error message %s", "formatted") { +// require.Equal(t, "two", obj[1]) +// } +func NotEmptyf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotEmptyf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// NotEqual asserts that the specified values are NOT equal. +// +// require.NotEqual(t, obj1, obj2) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func NotEqual(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotEqual(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotEqualValues asserts that two objects are not equal even when converted to the same type +// +// require.NotEqualValues(t, obj1, obj2) +func NotEqualValues(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotEqualValues(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotEqualValuesf asserts that two objects are not equal even when converted to the same type +// +// require.NotEqualValuesf(t, obj1, obj2, "error message %s", "formatted") +func NotEqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotEqualValuesf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// NotEqualf asserts that the specified values are NOT equal. +// +// require.NotEqualf(t, obj1, obj2, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func NotEqualf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotEqualf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// NotErrorAs asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func NotErrorAs(t TestingT, err error, target interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotErrorAs(t, err, target, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotErrorAsf asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func NotErrorAsf(t TestingT, err error, target interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotErrorAsf(t, err, target, msg, args...) { + return + } + t.FailNow() +} + +// NotErrorIs asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func NotErrorIs(t TestingT, err error, target error, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotErrorIs(t, err, target, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotErrorIsf asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func NotErrorIsf(t TestingT, err error, target error, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotErrorIsf(t, err, target, msg, args...) { + return + } + t.FailNow() +} + +// NotImplements asserts that an object does not implement the specified interface. +// +// require.NotImplements(t, (*MyInterface)(nil), new(MyObject)) +func NotImplements(t TestingT, interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotImplements(t, interfaceObject, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotImplementsf asserts that an object does not implement the specified interface. +// +// require.NotImplementsf(t, (*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func NotImplementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotImplementsf(t, interfaceObject, object, msg, args...) { + return + } + t.FailNow() +} + +// NotNil asserts that the specified object is not nil. +// +// require.NotNil(t, err) +func NotNil(t TestingT, object interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotNil(t, object, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotNilf asserts that the specified object is not nil. +// +// require.NotNilf(t, err, "error message %s", "formatted") +func NotNilf(t TestingT, object interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotNilf(t, object, msg, args...) { + return + } + t.FailNow() +} + +// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// require.NotPanics(t, func(){ RemainCalm() }) +func NotPanics(t TestingT, f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotPanics(t, f, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// require.NotPanicsf(t, func(){ RemainCalm() }, "error message %s", "formatted") +func NotPanicsf(t TestingT, f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotPanicsf(t, f, msg, args...) { + return + } + t.FailNow() +} + +// NotRegexp asserts that a specified regexp does not match a string. +// +// require.NotRegexp(t, regexp.MustCompile("starts"), "it's starting") +// require.NotRegexp(t, "^start", "it's not starting") +func NotRegexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotRegexp(t, rx, str, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotRegexpf asserts that a specified regexp does not match a string. +// +// require.NotRegexpf(t, regexp.MustCompile("starts"), "it's starting", "error message %s", "formatted") +// require.NotRegexpf(t, "^start", "it's not starting", "error message %s", "formatted") +func NotRegexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotRegexpf(t, rx, str, msg, args...) { + return + } + t.FailNow() +} + +// NotSame asserts that two pointers do not reference the same object. +// +// require.NotSame(t, ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func NotSame(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotSame(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotSamef asserts that two pointers do not reference the same object. +// +// require.NotSamef(t, ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func NotSamef(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotSamef(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// NotSubset asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// require.NotSubset(t, [1, 3, 4], [1, 2]) +// require.NotSubset(t, {"x": 1, "y": 2}, {"z": 3}) +// require.NotSubset(t, [1, 3, 4], {1: "one", 2: "two"}) +// require.NotSubset(t, {"x": 1, "y": 2}, ["z"]) +func NotSubset(t TestingT, list interface{}, subset interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotSubset(t, list, subset, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotSubsetf asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// require.NotSubsetf(t, [1, 3, 4], [1, 2], "error message %s", "formatted") +// require.NotSubsetf(t, {"x": 1, "y": 2}, {"z": 3}, "error message %s", "formatted") +// require.NotSubsetf(t, [1, 3, 4], {1: "one", 2: "two"}, "error message %s", "formatted") +// require.NotSubsetf(t, {"x": 1, "y": 2}, ["z"], "error message %s", "formatted") +func NotSubsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotSubsetf(t, list, subset, msg, args...) { + return + } + t.FailNow() +} + +// NotZero asserts that i is not the zero value for its type. +func NotZero(t TestingT, i interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotZero(t, i, msgAndArgs...) { + return + } + t.FailNow() +} + +// NotZerof asserts that i is not the zero value for its type. +func NotZerof(t TestingT, i interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.NotZerof(t, i, msg, args...) { + return + } + t.FailNow() +} + +// Panics asserts that the code inside the specified PanicTestFunc panics. +// +// require.Panics(t, func(){ GoCrazy() }) +func Panics(t TestingT, f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Panics(t, f, msgAndArgs...) { + return + } + t.FailNow() +} + +// PanicsWithError asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// require.PanicsWithError(t, "crazy error", func(){ GoCrazy() }) +func PanicsWithError(t TestingT, errString string, f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.PanicsWithError(t, errString, f, msgAndArgs...) { + return + } + t.FailNow() +} + +// PanicsWithErrorf asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// require.PanicsWithErrorf(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func PanicsWithErrorf(t TestingT, errString string, f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.PanicsWithErrorf(t, errString, f, msg, args...) { + return + } + t.FailNow() +} + +// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// require.PanicsWithValue(t, "crazy error", func(){ GoCrazy() }) +func PanicsWithValue(t TestingT, expected interface{}, f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.PanicsWithValue(t, expected, f, msgAndArgs...) { + return + } + t.FailNow() +} + +// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// require.PanicsWithValuef(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func PanicsWithValuef(t TestingT, expected interface{}, f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.PanicsWithValuef(t, expected, f, msg, args...) { + return + } + t.FailNow() +} + +// Panicsf asserts that the code inside the specified PanicTestFunc panics. +// +// require.Panicsf(t, func(){ GoCrazy() }, "error message %s", "formatted") +func Panicsf(t TestingT, f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Panicsf(t, f, msg, args...) { + return + } + t.FailNow() +} + +// Positive asserts that the specified element is positive +// +// require.Positive(t, 1) +// require.Positive(t, 1.23) +func Positive(t TestingT, e interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Positive(t, e, msgAndArgs...) { + return + } + t.FailNow() +} + +// Positivef asserts that the specified element is positive +// +// require.Positivef(t, 1, "error message %s", "formatted") +// require.Positivef(t, 1.23, "error message %s", "formatted") +func Positivef(t TestingT, e interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Positivef(t, e, msg, args...) { + return + } + t.FailNow() +} + +// Regexp asserts that a specified regexp matches a string. +// +// require.Regexp(t, regexp.MustCompile("start"), "it's starting") +// require.Regexp(t, "start...$", "it's not starting") +func Regexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Regexp(t, rx, str, msgAndArgs...) { + return + } + t.FailNow() +} + +// Regexpf asserts that a specified regexp matches a string. +// +// require.Regexpf(t, regexp.MustCompile("start"), "it's starting", "error message %s", "formatted") +// require.Regexpf(t, "start...$", "it's not starting", "error message %s", "formatted") +func Regexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Regexpf(t, rx, str, msg, args...) { + return + } + t.FailNow() +} + +// Same asserts that two pointers reference the same object. +// +// require.Same(t, ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func Same(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Same(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// Samef asserts that two pointers reference the same object. +// +// require.Samef(t, ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func Samef(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Samef(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// Subset asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// require.Subset(t, [1, 2, 3], [1, 2]) +// require.Subset(t, {"x": 1, "y": 2}, {"x": 1}) +// require.Subset(t, [1, 2, 3], {1: "one", 2: "two"}) +// require.Subset(t, {"x": 1, "y": 2}, ["x"]) +func Subset(t TestingT, list interface{}, subset interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Subset(t, list, subset, msgAndArgs...) { + return + } + t.FailNow() +} + +// Subsetf asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// require.Subsetf(t, [1, 2, 3], [1, 2], "error message %s", "formatted") +// require.Subsetf(t, {"x": 1, "y": 2}, {"x": 1}, "error message %s", "formatted") +// require.Subsetf(t, [1, 2, 3], {1: "one", 2: "two"}, "error message %s", "formatted") +// require.Subsetf(t, {"x": 1, "y": 2}, ["x"], "error message %s", "formatted") +func Subsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Subsetf(t, list, subset, msg, args...) { + return + } + t.FailNow() +} + +// True asserts that the specified value is true. +// +// require.True(t, myBool) +func True(t TestingT, value bool, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.True(t, value, msgAndArgs...) { + return + } + t.FailNow() +} + +// Truef asserts that the specified value is true. +// +// require.Truef(t, myBool, "error message %s", "formatted") +func Truef(t TestingT, value bool, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Truef(t, value, msg, args...) { + return + } + t.FailNow() +} + +// WithinDuration asserts that the two times are within duration delta of each other. +// +// require.WithinDuration(t, time.Now(), time.Now(), 10*time.Second) +func WithinDuration(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.WithinDuration(t, expected, actual, delta, msgAndArgs...) { + return + } + t.FailNow() +} + +// WithinDurationf asserts that the two times are within duration delta of each other. +// +// require.WithinDurationf(t, time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") +func WithinDurationf(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.WithinDurationf(t, expected, actual, delta, msg, args...) { + return + } + t.FailNow() +} + +// WithinRange asserts that a time is within a time range (inclusive). +// +// require.WithinRange(t, time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second)) +func WithinRange(t TestingT, actual time.Time, start time.Time, end time.Time, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.WithinRange(t, actual, start, end, msgAndArgs...) { + return + } + t.FailNow() +} + +// WithinRangef asserts that a time is within a time range (inclusive). +// +// require.WithinRangef(t, time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second), "error message %s", "formatted") +func WithinRangef(t TestingT, actual time.Time, start time.Time, end time.Time, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.WithinRangef(t, actual, start, end, msg, args...) { + return + } + t.FailNow() +} + +// YAMLEq asserts that two YAML strings are equivalent. +func YAMLEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.YAMLEq(t, expected, actual, msgAndArgs...) { + return + } + t.FailNow() +} + +// YAMLEqf asserts that two YAML strings are equivalent. +func YAMLEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.YAMLEqf(t, expected, actual, msg, args...) { + return + } + t.FailNow() +} + +// Zero asserts that i is the zero value for its type. +func Zero(t TestingT, i interface{}, msgAndArgs ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Zero(t, i, msgAndArgs...) { + return + } + t.FailNow() +} + +// Zerof asserts that i is the zero value for its type. +func Zerof(t TestingT, i interface{}, msg string, args ...interface{}) { + if h, ok := t.(tHelper); ok { + h.Helper() + } + if assert.Zerof(t, i, msg, args...) { + return + } + t.FailNow() +} diff --git a/vendor/github.com/stretchr/testify/require/require.go.tmpl b/vendor/github.com/stretchr/testify/require/require.go.tmpl new file mode 100644 index 00000000..8b328368 --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/require.go.tmpl @@ -0,0 +1,6 @@ +{{ replace .Comment "assert." "require."}} +func {{.DocInfo.Name}}(t TestingT, {{.Params}}) { + if h, ok := t.(tHelper); ok { h.Helper() } + if assert.{{.DocInfo.Name}}(t, {{.ForwardedParams}}) { return } + t.FailNow() +} diff --git a/vendor/github.com/stretchr/testify/require/require_forward.go b/vendor/github.com/stretchr/testify/require/require_forward.go new file mode 100644 index 00000000..e6f7e944 --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/require_forward.go @@ -0,0 +1,1724 @@ +// Code generated with github.com/stretchr/testify/_codegen; DO NOT EDIT. + +package require + +import ( + assert "github.com/stretchr/testify/assert" + http "net/http" + url "net/url" + time "time" +) + +// Condition uses a Comparison to assert a complex condition. +func (a *Assertions) Condition(comp assert.Comparison, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Condition(a.t, comp, msgAndArgs...) +} + +// Conditionf uses a Comparison to assert a complex condition. +func (a *Assertions) Conditionf(comp assert.Comparison, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Conditionf(a.t, comp, msg, args...) +} + +// Contains asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// a.Contains("Hello World", "World") +// a.Contains(["Hello", "World"], "World") +// a.Contains({"Hello": "World"}, "Hello") +func (a *Assertions) Contains(s interface{}, contains interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Contains(a.t, s, contains, msgAndArgs...) +} + +// Containsf asserts that the specified string, list(array, slice...) or map contains the +// specified substring or element. +// +// a.Containsf("Hello World", "World", "error message %s", "formatted") +// a.Containsf(["Hello", "World"], "World", "error message %s", "formatted") +// a.Containsf({"Hello": "World"}, "Hello", "error message %s", "formatted") +func (a *Assertions) Containsf(s interface{}, contains interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Containsf(a.t, s, contains, msg, args...) +} + +// DirExists checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func (a *Assertions) DirExists(path string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + DirExists(a.t, path, msgAndArgs...) +} + +// DirExistsf checks whether a directory exists in the given path. It also fails +// if the path is a file rather a directory or there is an error checking whether it exists. +func (a *Assertions) DirExistsf(path string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + DirExistsf(a.t, path, msg, args...) +} + +// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// a.ElementsMatch([1, 3, 2, 3], [1, 3, 3, 2]) +func (a *Assertions) ElementsMatch(listA interface{}, listB interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ElementsMatch(a.t, listA, listB, msgAndArgs...) +} + +// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should match. +// +// a.ElementsMatchf([1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") +func (a *Assertions) ElementsMatchf(listA interface{}, listB interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ElementsMatchf(a.t, listA, listB, msg, args...) +} + +// Empty asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// a.Empty(obj) +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func (a *Assertions) Empty(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Empty(a.t, object, msgAndArgs...) +} + +// Emptyf asserts that the given value is "empty". +// +// [Zero values] are "empty". +// +// Arrays are "empty" if every element is the zero value of the type (stricter than "empty"). +// +// Slices, maps and channels with zero length are "empty". +// +// Pointer values are "empty" if the pointer is nil or if the pointed value is "empty". +// +// a.Emptyf(obj, "error message %s", "formatted") +// +// [Zero values]: https://go.dev/ref/spec#The_zero_value +func (a *Assertions) Emptyf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Emptyf(a.t, object, msg, args...) +} + +// Equal asserts that two objects are equal. +// +// a.Equal(123, 123) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func (a *Assertions) Equal(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Equal(a.t, expected, actual, msgAndArgs...) +} + +// EqualError asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// a.EqualError(err, expectedErrorString) +func (a *Assertions) EqualError(theError error, errString string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EqualError(a.t, theError, errString, msgAndArgs...) +} + +// EqualErrorf asserts that a function returned an error (i.e. not `nil`) +// and that it is equal to the provided error. +// +// actualObj, err := SomeFunction() +// a.EqualErrorf(err, expectedErrorString, "error message %s", "formatted") +func (a *Assertions) EqualErrorf(theError error, errString string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EqualErrorf(a.t, theError, errString, msg, args...) +} + +// EqualExportedValues asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// a.EqualExportedValues(S{1, 2}, S{1, 3}) => true +// a.EqualExportedValues(S{1, 2}, S{2, 3}) => false +func (a *Assertions) EqualExportedValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EqualExportedValues(a.t, expected, actual, msgAndArgs...) +} + +// EqualExportedValuesf asserts that the types of two objects are equal and their public +// fields are also equal. This is useful for comparing structs that have private fields +// that could potentially differ. +// +// type S struct { +// Exported int +// notExported int +// } +// a.EqualExportedValuesf(S{1, 2}, S{1, 3}, "error message %s", "formatted") => true +// a.EqualExportedValuesf(S{1, 2}, S{2, 3}, "error message %s", "formatted") => false +func (a *Assertions) EqualExportedValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EqualExportedValuesf(a.t, expected, actual, msg, args...) +} + +// EqualValues asserts that two objects are equal or convertible to the larger +// type and equal. +// +// a.EqualValues(uint32(123), int32(123)) +func (a *Assertions) EqualValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EqualValues(a.t, expected, actual, msgAndArgs...) +} + +// EqualValuesf asserts that two objects are equal or convertible to the larger +// type and equal. +// +// a.EqualValuesf(uint32(123), int32(123), "error message %s", "formatted") +func (a *Assertions) EqualValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EqualValuesf(a.t, expected, actual, msg, args...) +} + +// Equalf asserts that two objects are equal. +// +// a.Equalf(123, 123, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). Function equality +// cannot be determined and will always fail. +func (a *Assertions) Equalf(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Equalf(a.t, expected, actual, msg, args...) +} + +// Error asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// a.Error(err) +func (a *Assertions) Error(err error, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Error(a.t, err, msgAndArgs...) +} + +// ErrorAs asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func (a *Assertions) ErrorAs(err error, target interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ErrorAs(a.t, err, target, msgAndArgs...) +} + +// ErrorAsf asserts that at least one of the errors in err's chain matches target, and if so, sets target to that error value. +// This is a wrapper for errors.As. +func (a *Assertions) ErrorAsf(err error, target interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ErrorAsf(a.t, err, target, msg, args...) +} + +// ErrorContains asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// a.ErrorContains(err, expectedErrorSubString) +func (a *Assertions) ErrorContains(theError error, contains string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ErrorContains(a.t, theError, contains, msgAndArgs...) +} + +// ErrorContainsf asserts that a function returned an error (i.e. not `nil`) +// and that the error contains the specified substring. +// +// actualObj, err := SomeFunction() +// a.ErrorContainsf(err, expectedErrorSubString, "error message %s", "formatted") +func (a *Assertions) ErrorContainsf(theError error, contains string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ErrorContainsf(a.t, theError, contains, msg, args...) +} + +// ErrorIs asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) ErrorIs(err error, target error, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ErrorIs(a.t, err, target, msgAndArgs...) +} + +// ErrorIsf asserts that at least one of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) ErrorIsf(err error, target error, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + ErrorIsf(a.t, err, target, msg, args...) +} + +// Errorf asserts that a function returned an error (i.e. not `nil`). +// +// actualObj, err := SomeFunction() +// a.Errorf(err, "error message %s", "formatted") +func (a *Assertions) Errorf(err error, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Errorf(a.t, err, msg, args...) +} + +// Eventually asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// a.Eventually(func() bool { return true; }, time.Second, 10*time.Millisecond) +func (a *Assertions) Eventually(condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Eventually(a.t, condition, waitFor, tick, msgAndArgs...) +} + +// EventuallyWithT asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// a.EventuallyWithT(func(c *assert.CollectT) { +// // add assertions as needed; any assertion failure will fail the current tick +// assert.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func (a *Assertions) EventuallyWithT(condition func(collect *assert.CollectT), waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EventuallyWithT(a.t, condition, waitFor, tick, msgAndArgs...) +} + +// EventuallyWithTf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. In contrast to Eventually, +// it supplies a CollectT to the condition function, so that the condition +// function can use the CollectT to call other assertions. +// The condition is considered "met" if no errors are raised in a tick. +// The supplied CollectT collects all errors from one tick (if there are any). +// If the condition is not met before waitFor, the collected errors of +// the last tick are copied to t. +// +// externalValue := false +// go func() { +// time.Sleep(8*time.Second) +// externalValue = true +// }() +// a.EventuallyWithTf(func(c *assert.CollectT, "error message %s", "formatted") { +// // add assertions as needed; any assertion failure will fail the current tick +// assert.True(c, externalValue, "expected 'externalValue' to be true") +// }, 10*time.Second, 1*time.Second, "external state has not changed to 'true'; still false") +func (a *Assertions) EventuallyWithTf(condition func(collect *assert.CollectT), waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + EventuallyWithTf(a.t, condition, waitFor, tick, msg, args...) +} + +// Eventuallyf asserts that given condition will be met in waitFor time, +// periodically checking target function each tick. +// +// a.Eventuallyf(func() bool { return true; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func (a *Assertions) Eventuallyf(condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Eventuallyf(a.t, condition, waitFor, tick, msg, args...) +} + +// Exactly asserts that two objects are equal in value and type. +// +// a.Exactly(int32(123), int64(123)) +func (a *Assertions) Exactly(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Exactly(a.t, expected, actual, msgAndArgs...) +} + +// Exactlyf asserts that two objects are equal in value and type. +// +// a.Exactlyf(int32(123), int64(123), "error message %s", "formatted") +func (a *Assertions) Exactlyf(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Exactlyf(a.t, expected, actual, msg, args...) +} + +// Fail reports a failure through +func (a *Assertions) Fail(failureMessage string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Fail(a.t, failureMessage, msgAndArgs...) +} + +// FailNow fails test +func (a *Assertions) FailNow(failureMessage string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + FailNow(a.t, failureMessage, msgAndArgs...) +} + +// FailNowf fails test +func (a *Assertions) FailNowf(failureMessage string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + FailNowf(a.t, failureMessage, msg, args...) +} + +// Failf reports a failure through +func (a *Assertions) Failf(failureMessage string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Failf(a.t, failureMessage, msg, args...) +} + +// False asserts that the specified value is false. +// +// a.False(myBool) +func (a *Assertions) False(value bool, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + False(a.t, value, msgAndArgs...) +} + +// Falsef asserts that the specified value is false. +// +// a.Falsef(myBool, "error message %s", "formatted") +func (a *Assertions) Falsef(value bool, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Falsef(a.t, value, msg, args...) +} + +// FileExists checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func (a *Assertions) FileExists(path string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + FileExists(a.t, path, msgAndArgs...) +} + +// FileExistsf checks whether a file exists in the given path. It also fails if +// the path points to a directory or there is an error when trying to check the file. +func (a *Assertions) FileExistsf(path string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + FileExistsf(a.t, path, msg, args...) +} + +// Greater asserts that the first element is greater than the second +// +// a.Greater(2, 1) +// a.Greater(float64(2), float64(1)) +// a.Greater("b", "a") +func (a *Assertions) Greater(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Greater(a.t, e1, e2, msgAndArgs...) +} + +// GreaterOrEqual asserts that the first element is greater than or equal to the second +// +// a.GreaterOrEqual(2, 1) +// a.GreaterOrEqual(2, 2) +// a.GreaterOrEqual("b", "a") +// a.GreaterOrEqual("b", "b") +func (a *Assertions) GreaterOrEqual(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + GreaterOrEqual(a.t, e1, e2, msgAndArgs...) +} + +// GreaterOrEqualf asserts that the first element is greater than or equal to the second +// +// a.GreaterOrEqualf(2, 1, "error message %s", "formatted") +// a.GreaterOrEqualf(2, 2, "error message %s", "formatted") +// a.GreaterOrEqualf("b", "a", "error message %s", "formatted") +// a.GreaterOrEqualf("b", "b", "error message %s", "formatted") +func (a *Assertions) GreaterOrEqualf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + GreaterOrEqualf(a.t, e1, e2, msg, args...) +} + +// Greaterf asserts that the first element is greater than the second +// +// a.Greaterf(2, 1, "error message %s", "formatted") +// a.Greaterf(float64(2), float64(1), "error message %s", "formatted") +// a.Greaterf("b", "a", "error message %s", "formatted") +func (a *Assertions) Greaterf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Greaterf(a.t, e1, e2, msg, args...) +} + +// HTTPBodyContains asserts that a specified handler returns a +// body that contains a string. +// +// a.HTTPBodyContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPBodyContains(a.t, handler, method, url, values, str, msgAndArgs...) +} + +// HTTPBodyContainsf asserts that a specified handler returns a +// body that contains a string. +// +// a.HTTPBodyContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPBodyContainsf(a.t, handler, method, url, values, str, msg, args...) +} + +// HTTPBodyNotContains asserts that a specified handler returns a +// body that does not contain a string. +// +// a.HTTPBodyNotContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyNotContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPBodyNotContains(a.t, handler, method, url, values, str, msgAndArgs...) +} + +// HTTPBodyNotContainsf asserts that a specified handler returns a +// body that does not contain a string. +// +// a.HTTPBodyNotContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPBodyNotContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPBodyNotContainsf(a.t, handler, method, url, values, str, msg, args...) +} + +// HTTPError asserts that a specified handler returns an error status code. +// +// a.HTTPError(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPError(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPError(a.t, handler, method, url, values, msgAndArgs...) +} + +// HTTPErrorf asserts that a specified handler returns an error status code. +// +// a.HTTPErrorf(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPErrorf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPErrorf(a.t, handler, method, url, values, msg, args...) +} + +// HTTPRedirect asserts that a specified handler returns a redirect status code. +// +// a.HTTPRedirect(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPRedirect(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPRedirect(a.t, handler, method, url, values, msgAndArgs...) +} + +// HTTPRedirectf asserts that a specified handler returns a redirect status code. +// +// a.HTTPRedirectf(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPRedirectf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPRedirectf(a.t, handler, method, url, values, msg, args...) +} + +// HTTPStatusCode asserts that a specified handler returns a specified status code. +// +// a.HTTPStatusCode(myHandler, "GET", "/notImplemented", nil, 501) +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPStatusCode(handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPStatusCode(a.t, handler, method, url, values, statuscode, msgAndArgs...) +} + +// HTTPStatusCodef asserts that a specified handler returns a specified status code. +// +// a.HTTPStatusCodef(myHandler, "GET", "/notImplemented", nil, 501, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPStatusCodef(handler http.HandlerFunc, method string, url string, values url.Values, statuscode int, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPStatusCodef(a.t, handler, method, url, values, statuscode, msg, args...) +} + +// HTTPSuccess asserts that a specified handler returns a success status code. +// +// a.HTTPSuccess(myHandler, "POST", "http://www.google.com", nil) +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPSuccess(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPSuccess(a.t, handler, method, url, values, msgAndArgs...) +} + +// HTTPSuccessf asserts that a specified handler returns a success status code. +// +// a.HTTPSuccessf(myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") +// +// Returns whether the assertion was successful (true) or not (false). +func (a *Assertions) HTTPSuccessf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + HTTPSuccessf(a.t, handler, method, url, values, msg, args...) +} + +// Implements asserts that an object is implemented by the specified interface. +// +// a.Implements((*MyInterface)(nil), new(MyObject)) +func (a *Assertions) Implements(interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Implements(a.t, interfaceObject, object, msgAndArgs...) +} + +// Implementsf asserts that an object is implemented by the specified interface. +// +// a.Implementsf((*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func (a *Assertions) Implementsf(interfaceObject interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Implementsf(a.t, interfaceObject, object, msg, args...) +} + +// InDelta asserts that the two numerals are within delta of each other. +// +// a.InDelta(math.Pi, 22/7.0, 0.01) +func (a *Assertions) InDelta(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InDelta(a.t, expected, actual, delta, msgAndArgs...) +} + +// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func (a *Assertions) InDeltaMapValues(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InDeltaMapValues(a.t, expected, actual, delta, msgAndArgs...) +} + +// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. +func (a *Assertions) InDeltaMapValuesf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InDeltaMapValuesf(a.t, expected, actual, delta, msg, args...) +} + +// InDeltaSlice is the same as InDelta, except it compares two slices. +func (a *Assertions) InDeltaSlice(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InDeltaSlice(a.t, expected, actual, delta, msgAndArgs...) +} + +// InDeltaSlicef is the same as InDelta, except it compares two slices. +func (a *Assertions) InDeltaSlicef(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InDeltaSlicef(a.t, expected, actual, delta, msg, args...) +} + +// InDeltaf asserts that the two numerals are within delta of each other. +// +// a.InDeltaf(math.Pi, 22/7.0, 0.01, "error message %s", "formatted") +func (a *Assertions) InDeltaf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InDeltaf(a.t, expected, actual, delta, msg, args...) +} + +// InEpsilon asserts that expected and actual have a relative error less than epsilon +func (a *Assertions) InEpsilon(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InEpsilon(a.t, expected, actual, epsilon, msgAndArgs...) +} + +// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. +func (a *Assertions) InEpsilonSlice(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InEpsilonSlice(a.t, expected, actual, epsilon, msgAndArgs...) +} + +// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. +func (a *Assertions) InEpsilonSlicef(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InEpsilonSlicef(a.t, expected, actual, epsilon, msg, args...) +} + +// InEpsilonf asserts that expected and actual have a relative error less than epsilon +func (a *Assertions) InEpsilonf(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + InEpsilonf(a.t, expected, actual, epsilon, msg, args...) +} + +// IsDecreasing asserts that the collection is decreasing +// +// a.IsDecreasing([]int{2, 1, 0}) +// a.IsDecreasing([]float{2, 1}) +// a.IsDecreasing([]string{"b", "a"}) +func (a *Assertions) IsDecreasing(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsDecreasing(a.t, object, msgAndArgs...) +} + +// IsDecreasingf asserts that the collection is decreasing +// +// a.IsDecreasingf([]int{2, 1, 0}, "error message %s", "formatted") +// a.IsDecreasingf([]float{2, 1}, "error message %s", "formatted") +// a.IsDecreasingf([]string{"b", "a"}, "error message %s", "formatted") +func (a *Assertions) IsDecreasingf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsDecreasingf(a.t, object, msg, args...) +} + +// IsIncreasing asserts that the collection is increasing +// +// a.IsIncreasing([]int{1, 2, 3}) +// a.IsIncreasing([]float{1, 2}) +// a.IsIncreasing([]string{"a", "b"}) +func (a *Assertions) IsIncreasing(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsIncreasing(a.t, object, msgAndArgs...) +} + +// IsIncreasingf asserts that the collection is increasing +// +// a.IsIncreasingf([]int{1, 2, 3}, "error message %s", "formatted") +// a.IsIncreasingf([]float{1, 2}, "error message %s", "formatted") +// a.IsIncreasingf([]string{"a", "b"}, "error message %s", "formatted") +func (a *Assertions) IsIncreasingf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsIncreasingf(a.t, object, msg, args...) +} + +// IsNonDecreasing asserts that the collection is not decreasing +// +// a.IsNonDecreasing([]int{1, 1, 2}) +// a.IsNonDecreasing([]float{1, 2}) +// a.IsNonDecreasing([]string{"a", "b"}) +func (a *Assertions) IsNonDecreasing(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsNonDecreasing(a.t, object, msgAndArgs...) +} + +// IsNonDecreasingf asserts that the collection is not decreasing +// +// a.IsNonDecreasingf([]int{1, 1, 2}, "error message %s", "formatted") +// a.IsNonDecreasingf([]float{1, 2}, "error message %s", "formatted") +// a.IsNonDecreasingf([]string{"a", "b"}, "error message %s", "formatted") +func (a *Assertions) IsNonDecreasingf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsNonDecreasingf(a.t, object, msg, args...) +} + +// IsNonIncreasing asserts that the collection is not increasing +// +// a.IsNonIncreasing([]int{2, 1, 1}) +// a.IsNonIncreasing([]float{2, 1}) +// a.IsNonIncreasing([]string{"b", "a"}) +func (a *Assertions) IsNonIncreasing(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsNonIncreasing(a.t, object, msgAndArgs...) +} + +// IsNonIncreasingf asserts that the collection is not increasing +// +// a.IsNonIncreasingf([]int{2, 1, 1}, "error message %s", "formatted") +// a.IsNonIncreasingf([]float{2, 1}, "error message %s", "formatted") +// a.IsNonIncreasingf([]string{"b", "a"}, "error message %s", "formatted") +func (a *Assertions) IsNonIncreasingf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsNonIncreasingf(a.t, object, msg, args...) +} + +// IsNotType asserts that the specified objects are not of the same type. +// +// a.IsNotType(&NotMyStruct{}, &MyStruct{}) +func (a *Assertions) IsNotType(theType interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsNotType(a.t, theType, object, msgAndArgs...) +} + +// IsNotTypef asserts that the specified objects are not of the same type. +// +// a.IsNotTypef(&NotMyStruct{}, &MyStruct{}, "error message %s", "formatted") +func (a *Assertions) IsNotTypef(theType interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsNotTypef(a.t, theType, object, msg, args...) +} + +// IsType asserts that the specified objects are of the same type. +// +// a.IsType(&MyStruct{}, &MyStruct{}) +func (a *Assertions) IsType(expectedType interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsType(a.t, expectedType, object, msgAndArgs...) +} + +// IsTypef asserts that the specified objects are of the same type. +// +// a.IsTypef(&MyStruct{}, &MyStruct{}, "error message %s", "formatted") +func (a *Assertions) IsTypef(expectedType interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + IsTypef(a.t, expectedType, object, msg, args...) +} + +// JSONEq asserts that two JSON strings are equivalent. +// +// a.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) +func (a *Assertions) JSONEq(expected string, actual string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + JSONEq(a.t, expected, actual, msgAndArgs...) +} + +// JSONEqf asserts that two JSON strings are equivalent. +// +// a.JSONEqf(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") +func (a *Assertions) JSONEqf(expected string, actual string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + JSONEqf(a.t, expected, actual, msg, args...) +} + +// Len asserts that the specified object has specific length. +// Len also fails if the object has a type that len() not accept. +// +// a.Len(mySlice, 3) +func (a *Assertions) Len(object interface{}, length int, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Len(a.t, object, length, msgAndArgs...) +} + +// Lenf asserts that the specified object has specific length. +// Lenf also fails if the object has a type that len() not accept. +// +// a.Lenf(mySlice, 3, "error message %s", "formatted") +func (a *Assertions) Lenf(object interface{}, length int, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Lenf(a.t, object, length, msg, args...) +} + +// Less asserts that the first element is less than the second +// +// a.Less(1, 2) +// a.Less(float64(1), float64(2)) +// a.Less("a", "b") +func (a *Assertions) Less(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Less(a.t, e1, e2, msgAndArgs...) +} + +// LessOrEqual asserts that the first element is less than or equal to the second +// +// a.LessOrEqual(1, 2) +// a.LessOrEqual(2, 2) +// a.LessOrEqual("a", "b") +// a.LessOrEqual("b", "b") +func (a *Assertions) LessOrEqual(e1 interface{}, e2 interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + LessOrEqual(a.t, e1, e2, msgAndArgs...) +} + +// LessOrEqualf asserts that the first element is less than or equal to the second +// +// a.LessOrEqualf(1, 2, "error message %s", "formatted") +// a.LessOrEqualf(2, 2, "error message %s", "formatted") +// a.LessOrEqualf("a", "b", "error message %s", "formatted") +// a.LessOrEqualf("b", "b", "error message %s", "formatted") +func (a *Assertions) LessOrEqualf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + LessOrEqualf(a.t, e1, e2, msg, args...) +} + +// Lessf asserts that the first element is less than the second +// +// a.Lessf(1, 2, "error message %s", "formatted") +// a.Lessf(float64(1), float64(2), "error message %s", "formatted") +// a.Lessf("a", "b", "error message %s", "formatted") +func (a *Assertions) Lessf(e1 interface{}, e2 interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Lessf(a.t, e1, e2, msg, args...) +} + +// Negative asserts that the specified element is negative +// +// a.Negative(-1) +// a.Negative(-1.23) +func (a *Assertions) Negative(e interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Negative(a.t, e, msgAndArgs...) +} + +// Negativef asserts that the specified element is negative +// +// a.Negativef(-1, "error message %s", "formatted") +// a.Negativef(-1.23, "error message %s", "formatted") +func (a *Assertions) Negativef(e interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Negativef(a.t, e, msg, args...) +} + +// Never asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// a.Never(func() bool { return false; }, time.Second, 10*time.Millisecond) +func (a *Assertions) Never(condition func() bool, waitFor time.Duration, tick time.Duration, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Never(a.t, condition, waitFor, tick, msgAndArgs...) +} + +// Neverf asserts that the given condition doesn't satisfy in waitFor time, +// periodically checking the target function each tick. +// +// a.Neverf(func() bool { return false; }, time.Second, 10*time.Millisecond, "error message %s", "formatted") +func (a *Assertions) Neverf(condition func() bool, waitFor time.Duration, tick time.Duration, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Neverf(a.t, condition, waitFor, tick, msg, args...) +} + +// Nil asserts that the specified object is nil. +// +// a.Nil(err) +func (a *Assertions) Nil(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Nil(a.t, object, msgAndArgs...) +} + +// Nilf asserts that the specified object is nil. +// +// a.Nilf(err, "error message %s", "formatted") +func (a *Assertions) Nilf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Nilf(a.t, object, msg, args...) +} + +// NoDirExists checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func (a *Assertions) NoDirExists(path string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NoDirExists(a.t, path, msgAndArgs...) +} + +// NoDirExistsf checks whether a directory does not exist in the given path. +// It fails if the path points to an existing _directory_ only. +func (a *Assertions) NoDirExistsf(path string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NoDirExistsf(a.t, path, msg, args...) +} + +// NoError asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if a.NoError(err) { +// assert.Equal(t, expectedObj, actualObj) +// } +func (a *Assertions) NoError(err error, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NoError(a.t, err, msgAndArgs...) +} + +// NoErrorf asserts that a function returned no error (i.e. `nil`). +// +// actualObj, err := SomeFunction() +// if a.NoErrorf(err, "error message %s", "formatted") { +// assert.Equal(t, expectedObj, actualObj) +// } +func (a *Assertions) NoErrorf(err error, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NoErrorf(a.t, err, msg, args...) +} + +// NoFileExists checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func (a *Assertions) NoFileExists(path string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NoFileExists(a.t, path, msgAndArgs...) +} + +// NoFileExistsf checks whether a file does not exist in a given path. It fails +// if the path points to an existing _file_ only. +func (a *Assertions) NoFileExistsf(path string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NoFileExistsf(a.t, path, msg, args...) +} + +// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// a.NotContains("Hello World", "Earth") +// a.NotContains(["Hello", "World"], "Earth") +// a.NotContains({"Hello": "World"}, "Earth") +func (a *Assertions) NotContains(s interface{}, contains interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotContains(a.t, s, contains, msgAndArgs...) +} + +// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the +// specified substring or element. +// +// a.NotContainsf("Hello World", "Earth", "error message %s", "formatted") +// a.NotContainsf(["Hello", "World"], "Earth", "error message %s", "formatted") +// a.NotContainsf({"Hello": "World"}, "Earth", "error message %s", "formatted") +func (a *Assertions) NotContainsf(s interface{}, contains interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotContainsf(a.t, s, contains, msg, args...) +} + +// NotElementsMatch asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// a.NotElementsMatch([1, 1, 2, 3], [1, 1, 2, 3]) -> false +// +// a.NotElementsMatch([1, 1, 2, 3], [1, 2, 3]) -> true +// +// a.NotElementsMatch([1, 2, 3], [1, 2, 4]) -> true +func (a *Assertions) NotElementsMatch(listA interface{}, listB interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotElementsMatch(a.t, listA, listB, msgAndArgs...) +} + +// NotElementsMatchf asserts that the specified listA(array, slice...) is NOT equal to specified +// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, +// the number of appearances of each of them in both lists should not match. +// This is an inverse of ElementsMatch. +// +// a.NotElementsMatchf([1, 1, 2, 3], [1, 1, 2, 3], "error message %s", "formatted") -> false +// +// a.NotElementsMatchf([1, 1, 2, 3], [1, 2, 3], "error message %s", "formatted") -> true +// +// a.NotElementsMatchf([1, 2, 3], [1, 2, 4], "error message %s", "formatted") -> true +func (a *Assertions) NotElementsMatchf(listA interface{}, listB interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotElementsMatchf(a.t, listA, listB, msg, args...) +} + +// NotEmpty asserts that the specified object is NOT [Empty]. +// +// if a.NotEmpty(obj) { +// assert.Equal(t, "two", obj[1]) +// } +func (a *Assertions) NotEmpty(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotEmpty(a.t, object, msgAndArgs...) +} + +// NotEmptyf asserts that the specified object is NOT [Empty]. +// +// if a.NotEmptyf(obj, "error message %s", "formatted") { +// assert.Equal(t, "two", obj[1]) +// } +func (a *Assertions) NotEmptyf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotEmptyf(a.t, object, msg, args...) +} + +// NotEqual asserts that the specified values are NOT equal. +// +// a.NotEqual(obj1, obj2) +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func (a *Assertions) NotEqual(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotEqual(a.t, expected, actual, msgAndArgs...) +} + +// NotEqualValues asserts that two objects are not equal even when converted to the same type +// +// a.NotEqualValues(obj1, obj2) +func (a *Assertions) NotEqualValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotEqualValues(a.t, expected, actual, msgAndArgs...) +} + +// NotEqualValuesf asserts that two objects are not equal even when converted to the same type +// +// a.NotEqualValuesf(obj1, obj2, "error message %s", "formatted") +func (a *Assertions) NotEqualValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotEqualValuesf(a.t, expected, actual, msg, args...) +} + +// NotEqualf asserts that the specified values are NOT equal. +// +// a.NotEqualf(obj1, obj2, "error message %s", "formatted") +// +// Pointer variable equality is determined based on the equality of the +// referenced values (as opposed to the memory addresses). +func (a *Assertions) NotEqualf(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotEqualf(a.t, expected, actual, msg, args...) +} + +// NotErrorAs asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func (a *Assertions) NotErrorAs(err error, target interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotErrorAs(a.t, err, target, msgAndArgs...) +} + +// NotErrorAsf asserts that none of the errors in err's chain matches target, +// but if so, sets target to that error value. +func (a *Assertions) NotErrorAsf(err error, target interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotErrorAsf(a.t, err, target, msg, args...) +} + +// NotErrorIs asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) NotErrorIs(err error, target error, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotErrorIs(a.t, err, target, msgAndArgs...) +} + +// NotErrorIsf asserts that none of the errors in err's chain matches target. +// This is a wrapper for errors.Is. +func (a *Assertions) NotErrorIsf(err error, target error, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotErrorIsf(a.t, err, target, msg, args...) +} + +// NotImplements asserts that an object does not implement the specified interface. +// +// a.NotImplements((*MyInterface)(nil), new(MyObject)) +func (a *Assertions) NotImplements(interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotImplements(a.t, interfaceObject, object, msgAndArgs...) +} + +// NotImplementsf asserts that an object does not implement the specified interface. +// +// a.NotImplementsf((*MyInterface)(nil), new(MyObject), "error message %s", "formatted") +func (a *Assertions) NotImplementsf(interfaceObject interface{}, object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotImplementsf(a.t, interfaceObject, object, msg, args...) +} + +// NotNil asserts that the specified object is not nil. +// +// a.NotNil(err) +func (a *Assertions) NotNil(object interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotNil(a.t, object, msgAndArgs...) +} + +// NotNilf asserts that the specified object is not nil. +// +// a.NotNilf(err, "error message %s", "formatted") +func (a *Assertions) NotNilf(object interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotNilf(a.t, object, msg, args...) +} + +// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// a.NotPanics(func(){ RemainCalm() }) +func (a *Assertions) NotPanics(f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotPanics(a.t, f, msgAndArgs...) +} + +// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. +// +// a.NotPanicsf(func(){ RemainCalm() }, "error message %s", "formatted") +func (a *Assertions) NotPanicsf(f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotPanicsf(a.t, f, msg, args...) +} + +// NotRegexp asserts that a specified regexp does not match a string. +// +// a.NotRegexp(regexp.MustCompile("starts"), "it's starting") +// a.NotRegexp("^start", "it's not starting") +func (a *Assertions) NotRegexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotRegexp(a.t, rx, str, msgAndArgs...) +} + +// NotRegexpf asserts that a specified regexp does not match a string. +// +// a.NotRegexpf(regexp.MustCompile("starts"), "it's starting", "error message %s", "formatted") +// a.NotRegexpf("^start", "it's not starting", "error message %s", "formatted") +func (a *Assertions) NotRegexpf(rx interface{}, str interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotRegexpf(a.t, rx, str, msg, args...) +} + +// NotSame asserts that two pointers do not reference the same object. +// +// a.NotSame(ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) NotSame(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotSame(a.t, expected, actual, msgAndArgs...) +} + +// NotSamef asserts that two pointers do not reference the same object. +// +// a.NotSamef(ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) NotSamef(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotSamef(a.t, expected, actual, msg, args...) +} + +// NotSubset asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.NotSubset([1, 3, 4], [1, 2]) +// a.NotSubset({"x": 1, "y": 2}, {"z": 3}) +// a.NotSubset([1, 3, 4], {1: "one", 2: "two"}) +// a.NotSubset({"x": 1, "y": 2}, ["z"]) +func (a *Assertions) NotSubset(list interface{}, subset interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotSubset(a.t, list, subset, msgAndArgs...) +} + +// NotSubsetf asserts that the list (array, slice, or map) does NOT contain all +// elements given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.NotSubsetf([1, 3, 4], [1, 2], "error message %s", "formatted") +// a.NotSubsetf({"x": 1, "y": 2}, {"z": 3}, "error message %s", "formatted") +// a.NotSubsetf([1, 3, 4], {1: "one", 2: "two"}, "error message %s", "formatted") +// a.NotSubsetf({"x": 1, "y": 2}, ["z"], "error message %s", "formatted") +func (a *Assertions) NotSubsetf(list interface{}, subset interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotSubsetf(a.t, list, subset, msg, args...) +} + +// NotZero asserts that i is not the zero value for its type. +func (a *Assertions) NotZero(i interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotZero(a.t, i, msgAndArgs...) +} + +// NotZerof asserts that i is not the zero value for its type. +func (a *Assertions) NotZerof(i interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + NotZerof(a.t, i, msg, args...) +} + +// Panics asserts that the code inside the specified PanicTestFunc panics. +// +// a.Panics(func(){ GoCrazy() }) +func (a *Assertions) Panics(f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Panics(a.t, f, msgAndArgs...) +} + +// PanicsWithError asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// a.PanicsWithError("crazy error", func(){ GoCrazy() }) +func (a *Assertions) PanicsWithError(errString string, f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + PanicsWithError(a.t, errString, f, msgAndArgs...) +} + +// PanicsWithErrorf asserts that the code inside the specified PanicTestFunc +// panics, and that the recovered panic value is an error that satisfies the +// EqualError comparison. +// +// a.PanicsWithErrorf("crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func (a *Assertions) PanicsWithErrorf(errString string, f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + PanicsWithErrorf(a.t, errString, f, msg, args...) +} + +// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// a.PanicsWithValue("crazy error", func(){ GoCrazy() }) +func (a *Assertions) PanicsWithValue(expected interface{}, f assert.PanicTestFunc, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + PanicsWithValue(a.t, expected, f, msgAndArgs...) +} + +// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that +// the recovered panic value equals the expected panic value. +// +// a.PanicsWithValuef("crazy error", func(){ GoCrazy() }, "error message %s", "formatted") +func (a *Assertions) PanicsWithValuef(expected interface{}, f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + PanicsWithValuef(a.t, expected, f, msg, args...) +} + +// Panicsf asserts that the code inside the specified PanicTestFunc panics. +// +// a.Panicsf(func(){ GoCrazy() }, "error message %s", "formatted") +func (a *Assertions) Panicsf(f assert.PanicTestFunc, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Panicsf(a.t, f, msg, args...) +} + +// Positive asserts that the specified element is positive +// +// a.Positive(1) +// a.Positive(1.23) +func (a *Assertions) Positive(e interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Positive(a.t, e, msgAndArgs...) +} + +// Positivef asserts that the specified element is positive +// +// a.Positivef(1, "error message %s", "formatted") +// a.Positivef(1.23, "error message %s", "formatted") +func (a *Assertions) Positivef(e interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Positivef(a.t, e, msg, args...) +} + +// Regexp asserts that a specified regexp matches a string. +// +// a.Regexp(regexp.MustCompile("start"), "it's starting") +// a.Regexp("start...$", "it's not starting") +func (a *Assertions) Regexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Regexp(a.t, rx, str, msgAndArgs...) +} + +// Regexpf asserts that a specified regexp matches a string. +// +// a.Regexpf(regexp.MustCompile("start"), "it's starting", "error message %s", "formatted") +// a.Regexpf("start...$", "it's not starting", "error message %s", "formatted") +func (a *Assertions) Regexpf(rx interface{}, str interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Regexpf(a.t, rx, str, msg, args...) +} + +// Same asserts that two pointers reference the same object. +// +// a.Same(ptr1, ptr2) +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) Same(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Same(a.t, expected, actual, msgAndArgs...) +} + +// Samef asserts that two pointers reference the same object. +// +// a.Samef(ptr1, ptr2, "error message %s", "formatted") +// +// Both arguments must be pointer variables. Pointer variable sameness is +// determined based on the equality of both type and value. +func (a *Assertions) Samef(expected interface{}, actual interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Samef(a.t, expected, actual, msg, args...) +} + +// Subset asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.Subset([1, 2, 3], [1, 2]) +// a.Subset({"x": 1, "y": 2}, {"x": 1}) +// a.Subset([1, 2, 3], {1: "one", 2: "two"}) +// a.Subset({"x": 1, "y": 2}, ["x"]) +func (a *Assertions) Subset(list interface{}, subset interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Subset(a.t, list, subset, msgAndArgs...) +} + +// Subsetf asserts that the list (array, slice, or map) contains all elements +// given in the subset (array, slice, or map). +// Map elements are key-value pairs unless compared with an array or slice where +// only the map key is evaluated. +// +// a.Subsetf([1, 2, 3], [1, 2], "error message %s", "formatted") +// a.Subsetf({"x": 1, "y": 2}, {"x": 1}, "error message %s", "formatted") +// a.Subsetf([1, 2, 3], {1: "one", 2: "two"}, "error message %s", "formatted") +// a.Subsetf({"x": 1, "y": 2}, ["x"], "error message %s", "formatted") +func (a *Assertions) Subsetf(list interface{}, subset interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Subsetf(a.t, list, subset, msg, args...) +} + +// True asserts that the specified value is true. +// +// a.True(myBool) +func (a *Assertions) True(value bool, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + True(a.t, value, msgAndArgs...) +} + +// Truef asserts that the specified value is true. +// +// a.Truef(myBool, "error message %s", "formatted") +func (a *Assertions) Truef(value bool, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Truef(a.t, value, msg, args...) +} + +// WithinDuration asserts that the two times are within duration delta of each other. +// +// a.WithinDuration(time.Now(), time.Now(), 10*time.Second) +func (a *Assertions) WithinDuration(expected time.Time, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + WithinDuration(a.t, expected, actual, delta, msgAndArgs...) +} + +// WithinDurationf asserts that the two times are within duration delta of each other. +// +// a.WithinDurationf(time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") +func (a *Assertions) WithinDurationf(expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + WithinDurationf(a.t, expected, actual, delta, msg, args...) +} + +// WithinRange asserts that a time is within a time range (inclusive). +// +// a.WithinRange(time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second)) +func (a *Assertions) WithinRange(actual time.Time, start time.Time, end time.Time, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + WithinRange(a.t, actual, start, end, msgAndArgs...) +} + +// WithinRangef asserts that a time is within a time range (inclusive). +// +// a.WithinRangef(time.Now(), time.Now().Add(-time.Second), time.Now().Add(time.Second), "error message %s", "formatted") +func (a *Assertions) WithinRangef(actual time.Time, start time.Time, end time.Time, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + WithinRangef(a.t, actual, start, end, msg, args...) +} + +// YAMLEq asserts that two YAML strings are equivalent. +func (a *Assertions) YAMLEq(expected string, actual string, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + YAMLEq(a.t, expected, actual, msgAndArgs...) +} + +// YAMLEqf asserts that two YAML strings are equivalent. +func (a *Assertions) YAMLEqf(expected string, actual string, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + YAMLEqf(a.t, expected, actual, msg, args...) +} + +// Zero asserts that i is the zero value for its type. +func (a *Assertions) Zero(i interface{}, msgAndArgs ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Zero(a.t, i, msgAndArgs...) +} + +// Zerof asserts that i is the zero value for its type. +func (a *Assertions) Zerof(i interface{}, msg string, args ...interface{}) { + if h, ok := a.t.(tHelper); ok { + h.Helper() + } + Zerof(a.t, i, msg, args...) +} diff --git a/vendor/github.com/stretchr/testify/require/require_forward.go.tmpl b/vendor/github.com/stretchr/testify/require/require_forward.go.tmpl new file mode 100644 index 00000000..54124df1 --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/require_forward.go.tmpl @@ -0,0 +1,5 @@ +{{.CommentWithoutT "a"}} +func (a *Assertions) {{.DocInfo.Name}}({{.Params}}) { + if h, ok := a.t.(tHelper); ok { h.Helper() } + {{.DocInfo.Name}}(a.t, {{.ForwardedParams}}) +} diff --git a/vendor/github.com/stretchr/testify/require/requirements.go b/vendor/github.com/stretchr/testify/require/requirements.go new file mode 100644 index 00000000..6b7ce929 --- /dev/null +++ b/vendor/github.com/stretchr/testify/require/requirements.go @@ -0,0 +1,29 @@ +package require + +// TestingT is an interface wrapper around *testing.T +type TestingT interface { + Errorf(format string, args ...interface{}) + FailNow() +} + +type tHelper = interface { + Helper() +} + +// ComparisonAssertionFunc is a common function prototype when comparing two values. Can be useful +// for table driven tests. +type ComparisonAssertionFunc func(TestingT, interface{}, interface{}, ...interface{}) + +// ValueAssertionFunc is a common function prototype when validating a single value. Can be useful +// for table driven tests. +type ValueAssertionFunc func(TestingT, interface{}, ...interface{}) + +// BoolAssertionFunc is a common function prototype when validating a bool value. Can be useful +// for table driven tests. +type BoolAssertionFunc func(TestingT, bool, ...interface{}) + +// ErrorAssertionFunc is a common function prototype when validating an error value. Can be useful +// for table driven tests. +type ErrorAssertionFunc func(TestingT, error, ...interface{}) + +//go:generate sh -c "cd ../_codegen && go build && cd - && ../_codegen/_codegen -output-package=require -template=require.go.tmpl -include-format-funcs" diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go new file mode 100644 index 00000000..f5fbbdbf --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go @@ -0,0 +1,23 @@ +/* +Copyright 2016 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// +k8s:deepcopy-gen=package +// +k8s:protobuf-gen=package +// +k8s:openapi-gen=true + +// +groupName=imagepolicy.k8s.io + +package v1alpha1 diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/generated.pb.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/generated.pb.go new file mode 100644 index 00000000..57732a51 --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/generated.pb.go @@ -0,0 +1,1374 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by protoc-gen-gogo. DO NOT EDIT. +// source: k8s.io/api/imagepolicy/v1alpha1/generated.proto + +package v1alpha1 + +import ( + fmt "fmt" + + io "io" + + proto "github.com/gogo/protobuf/proto" + github_com_gogo_protobuf_sortkeys "github.com/gogo/protobuf/sortkeys" + + math "math" + math_bits "math/bits" + reflect "reflect" + strings "strings" +) + +// Reference imports to suppress errors if they are not otherwise used. +var _ = proto.Marshal +var _ = fmt.Errorf +var _ = math.Inf + +// This is a compile-time assertion to ensure that this generated file +// is compatible with the proto package it is being compiled against. +// A compilation error at this line likely means your copy of the +// proto package needs to be updated. +const _ = proto.GoGoProtoPackageIsVersion3 // please upgrade the proto package + +func (m *ImageReview) Reset() { *m = ImageReview{} } +func (*ImageReview) ProtoMessage() {} +func (*ImageReview) Descriptor() ([]byte, []int) { + return fileDescriptor_7620d1538838ac6f, []int{0} +} +func (m *ImageReview) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ImageReview) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ImageReview) XXX_Merge(src proto.Message) { + xxx_messageInfo_ImageReview.Merge(m, src) +} +func (m *ImageReview) XXX_Size() int { + return m.Size() +} +func (m *ImageReview) XXX_DiscardUnknown() { + xxx_messageInfo_ImageReview.DiscardUnknown(m) +} + +var xxx_messageInfo_ImageReview proto.InternalMessageInfo + +func (m *ImageReviewContainerSpec) Reset() { *m = ImageReviewContainerSpec{} } +func (*ImageReviewContainerSpec) ProtoMessage() {} +func (*ImageReviewContainerSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_7620d1538838ac6f, []int{1} +} +func (m *ImageReviewContainerSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ImageReviewContainerSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ImageReviewContainerSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_ImageReviewContainerSpec.Merge(m, src) +} +func (m *ImageReviewContainerSpec) XXX_Size() int { + return m.Size() +} +func (m *ImageReviewContainerSpec) XXX_DiscardUnknown() { + xxx_messageInfo_ImageReviewContainerSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_ImageReviewContainerSpec proto.InternalMessageInfo + +func (m *ImageReviewSpec) Reset() { *m = ImageReviewSpec{} } +func (*ImageReviewSpec) ProtoMessage() {} +func (*ImageReviewSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_7620d1538838ac6f, []int{2} +} +func (m *ImageReviewSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ImageReviewSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ImageReviewSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_ImageReviewSpec.Merge(m, src) +} +func (m *ImageReviewSpec) XXX_Size() int { + return m.Size() +} +func (m *ImageReviewSpec) XXX_DiscardUnknown() { + xxx_messageInfo_ImageReviewSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_ImageReviewSpec proto.InternalMessageInfo + +func (m *ImageReviewStatus) Reset() { *m = ImageReviewStatus{} } +func (*ImageReviewStatus) ProtoMessage() {} +func (*ImageReviewStatus) Descriptor() ([]byte, []int) { + return fileDescriptor_7620d1538838ac6f, []int{3} +} +func (m *ImageReviewStatus) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ImageReviewStatus) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ImageReviewStatus) XXX_Merge(src proto.Message) { + xxx_messageInfo_ImageReviewStatus.Merge(m, src) +} +func (m *ImageReviewStatus) XXX_Size() int { + return m.Size() +} +func (m *ImageReviewStatus) XXX_DiscardUnknown() { + xxx_messageInfo_ImageReviewStatus.DiscardUnknown(m) +} + +var xxx_messageInfo_ImageReviewStatus proto.InternalMessageInfo + +func init() { + proto.RegisterType((*ImageReview)(nil), "k8s.io.api.imagepolicy.v1alpha1.ImageReview") + proto.RegisterType((*ImageReviewContainerSpec)(nil), "k8s.io.api.imagepolicy.v1alpha1.ImageReviewContainerSpec") + proto.RegisterType((*ImageReviewSpec)(nil), "k8s.io.api.imagepolicy.v1alpha1.ImageReviewSpec") + proto.RegisterMapType((map[string]string)(nil), "k8s.io.api.imagepolicy.v1alpha1.ImageReviewSpec.AnnotationsEntry") + proto.RegisterType((*ImageReviewStatus)(nil), "k8s.io.api.imagepolicy.v1alpha1.ImageReviewStatus") + proto.RegisterMapType((map[string]string)(nil), "k8s.io.api.imagepolicy.v1alpha1.ImageReviewStatus.AuditAnnotationsEntry") +} + +func init() { + proto.RegisterFile("k8s.io/api/imagepolicy/v1alpha1/generated.proto", fileDescriptor_7620d1538838ac6f) +} + +var fileDescriptor_7620d1538838ac6f = []byte{ + // 593 bytes of a gzipped FileDescriptorProto + 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0x94, 0x94, 0x4f, 0x6f, 0xd3, 0x30, + 0x18, 0xc6, 0x9b, 0x74, 0xff, 0xea, 0x02, 0xeb, 0x0c, 0x48, 0x51, 0x0f, 0xe9, 0x54, 0x24, 0x34, + 0x0e, 0xd8, 0xb4, 0x42, 0x68, 0x70, 0x00, 0x35, 0xd3, 0x24, 0x38, 0x00, 0x92, 0xb9, 0xed, 0x84, + 0x9b, 0x9a, 0xd4, 0xb4, 0x89, 0xa3, 0xd8, 0xe9, 0xe8, 0x8d, 0x4f, 0x80, 0xf8, 0x06, 0x7c, 0x11, + 0x3e, 0x40, 0x8f, 0x3b, 0xee, 0x34, 0xd1, 0x70, 0xe4, 0x4b, 0xa0, 0x38, 0x69, 0x13, 0xda, 0xa1, + 0xa9, 0xb7, 0xbc, 0xef, 0xeb, 0xe7, 0xf7, 0x3e, 0x79, 0x62, 0x05, 0xe0, 0xd1, 0xb1, 0x44, 0x5c, + 0x60, 0x1a, 0x72, 0xcc, 0x7d, 0xea, 0xb1, 0x50, 0x8c, 0xb9, 0x3b, 0xc5, 0x93, 0x0e, 0x1d, 0x87, + 0x43, 0xda, 0xc1, 0x1e, 0x0b, 0x58, 0x44, 0x15, 0x1b, 0xa0, 0x30, 0x12, 0x4a, 0xc0, 0x56, 0x26, + 0x40, 0x34, 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+ if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ImageReview) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ImageReview) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + { + size, err := m.Status.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x1a + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *ImageReviewContainerSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ImageReviewContainerSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ImageReviewContainerSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Image) + copy(dAtA[i:], m.Image) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Image))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *ImageReviewSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ImageReviewSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ImageReviewSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Namespace) + copy(dAtA[i:], m.Namespace) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Namespace))) + i-- + dAtA[i] = 0x1a + if len(m.Annotations) > 0 { + keysForAnnotations := make([]string, 0, len(m.Annotations)) + for k := range m.Annotations { + keysForAnnotations = append(keysForAnnotations, string(k)) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForAnnotations) + for iNdEx := len(keysForAnnotations) - 1; iNdEx >= 0; iNdEx-- { + v := m.Annotations[string(keysForAnnotations[iNdEx])] + baseI := i + i -= len(v) + copy(dAtA[i:], v) + i = encodeVarintGenerated(dAtA, i, uint64(len(v))) + i-- + dAtA[i] = 0x12 + i -= len(keysForAnnotations[iNdEx]) + copy(dAtA[i:], keysForAnnotations[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(keysForAnnotations[iNdEx]))) + i-- + dAtA[i] = 0xa + i = encodeVarintGenerated(dAtA, i, uint64(baseI-i)) + i-- + dAtA[i] = 0x12 + } + } + if len(m.Containers) > 0 { + for iNdEx := len(m.Containers) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Containers[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + } + } + return len(dAtA) - i, nil +} + +func (m *ImageReviewStatus) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ImageReviewStatus) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ImageReviewStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.AuditAnnotations) > 0 { + keysForAuditAnnotations := make([]string, 0, len(m.AuditAnnotations)) + for k := range m.AuditAnnotations { + keysForAuditAnnotations = append(keysForAuditAnnotations, string(k)) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForAuditAnnotations) + for iNdEx := len(keysForAuditAnnotations) - 1; iNdEx >= 0; iNdEx-- { + v := m.AuditAnnotations[string(keysForAuditAnnotations[iNdEx])] + baseI := i + i -= len(v) + copy(dAtA[i:], v) + i = encodeVarintGenerated(dAtA, i, uint64(len(v))) + i-- + dAtA[i] = 0x12 + i -= len(keysForAuditAnnotations[iNdEx]) + copy(dAtA[i:], keysForAuditAnnotations[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(keysForAuditAnnotations[iNdEx]))) + i-- + dAtA[i] = 0xa + i = encodeVarintGenerated(dAtA, i, uint64(baseI-i)) + i-- + dAtA[i] = 0x1a + } + } + i -= len(m.Reason) + copy(dAtA[i:], m.Reason) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Reason))) + i-- + dAtA[i] = 0x12 + i-- + if m.Allowed { + dAtA[i] = 1 + } else { + dAtA[i] = 0 + } + i-- + dAtA[i] = 0x8 + return len(dAtA) - i, nil +} + +func encodeVarintGenerated(dAtA []byte, offset int, v uint64) int { + offset -= sovGenerated(v) + base := offset + for v >= 1<<7 { + dAtA[offset] = uint8(v&0x7f | 0x80) + v >>= 7 + offset++ + } + dAtA[offset] = uint8(v) + return base +} +func (m *ImageReview) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Status.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ImageReviewContainerSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Image) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ImageReviewSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.Containers) > 0 { + for _, e := range m.Containers { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Annotations) > 0 { + for k, v := range m.Annotations { + _ = k + _ = v + mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + len(v) + sovGenerated(uint64(len(v))) + n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) + } + } + l = len(m.Namespace) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ImageReviewStatus) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + n += 2 + l = len(m.Reason) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.AuditAnnotations) > 0 { + for k, v := range m.AuditAnnotations { + _ = k + _ = v + mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + len(v) + sovGenerated(uint64(len(v))) + n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) + } + } + return n +} + +func sovGenerated(x uint64) (n int) { + return (math_bits.Len64(x|1) + 6) / 7 +} +func sozGenerated(x uint64) (n int) { + return sovGenerated(uint64((x << 1) ^ uint64((int64(x) >> 63)))) +} +func (this *ImageReview) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ImageReview{`, + `ObjectMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ObjectMeta), "ObjectMeta", "v1.ObjectMeta", 1), `&`, ``, 1) + `,`, + `Spec:` + strings.Replace(strings.Replace(this.Spec.String(), "ImageReviewSpec", "ImageReviewSpec", 1), `&`, ``, 1) + `,`, + `Status:` + strings.Replace(strings.Replace(this.Status.String(), "ImageReviewStatus", "ImageReviewStatus", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *ImageReviewContainerSpec) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ImageReviewContainerSpec{`, + `Image:` + fmt.Sprintf("%v", this.Image) + `,`, + `}`, + }, "") + return s +} +func (this *ImageReviewSpec) String() string { + if this == nil { + return "nil" + } + repeatedStringForContainers := "[]ImageReviewContainerSpec{" + for _, f := range this.Containers { + repeatedStringForContainers += strings.Replace(strings.Replace(f.String(), "ImageReviewContainerSpec", "ImageReviewContainerSpec", 1), `&`, ``, 1) + "," + } + repeatedStringForContainers += "}" + keysForAnnotations := make([]string, 0, len(this.Annotations)) + for k := range this.Annotations { + keysForAnnotations = append(keysForAnnotations, k) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForAnnotations) + mapStringForAnnotations := "map[string]string{" + for _, k := range keysForAnnotations { + mapStringForAnnotations += fmt.Sprintf("%v: %v,", k, this.Annotations[k]) + } + mapStringForAnnotations += "}" + s := strings.Join([]string{`&ImageReviewSpec{`, + `Containers:` + repeatedStringForContainers + `,`, + `Annotations:` + mapStringForAnnotations + `,`, + `Namespace:` + fmt.Sprintf("%v", this.Namespace) + `,`, + `}`, + }, "") + return s +} +func (this *ImageReviewStatus) String() string { + if this == nil { + return "nil" + } + keysForAuditAnnotations := make([]string, 0, len(this.AuditAnnotations)) + for k := range this.AuditAnnotations { + keysForAuditAnnotations = append(keysForAuditAnnotations, k) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForAuditAnnotations) + mapStringForAuditAnnotations := "map[string]string{" + for _, k := range keysForAuditAnnotations { + mapStringForAuditAnnotations += fmt.Sprintf("%v: %v,", k, this.AuditAnnotations[k]) + } + mapStringForAuditAnnotations += "}" + s := strings.Join([]string{`&ImageReviewStatus{`, + `Allowed:` + fmt.Sprintf("%v", this.Allowed) + `,`, + `Reason:` + fmt.Sprintf("%v", this.Reason) + `,`, + `AuditAnnotations:` + mapStringForAuditAnnotations + `,`, + `}`, + }, "") + return s +} +func valueToStringGenerated(v interface{}) string { + rv := reflect.ValueOf(v) + if rv.IsNil() { + return "nil" + } + pv := reflect.Indirect(rv).Interface() + return fmt.Sprintf("*%v", pv) +} +func (m *ImageReview) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ImageReview: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ImageReview: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Status", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Status.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *ImageReviewContainerSpec) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ImageReviewContainerSpec: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ImageReviewContainerSpec: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Image", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Image = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *ImageReviewSpec) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ImageReviewSpec: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ImageReviewSpec: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Containers", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Containers = append(m.Containers, ImageReviewContainerSpec{}) + if err := m.Containers[len(m.Containers)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Annotations", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Annotations == nil { + m.Annotations = make(map[string]string) + } + var mapkey string + var mapvalue string + for iNdEx < postIndex { + entryPreIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + if fieldNum == 1 { + var stringLenmapkey uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapkey |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapkey := int(stringLenmapkey) + if intStringLenmapkey < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapkey := iNdEx + intStringLenmapkey + if postStringIndexmapkey < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapkey > l { + return io.ErrUnexpectedEOF + } + mapkey = string(dAtA[iNdEx:postStringIndexmapkey]) + iNdEx = postStringIndexmapkey + } else if fieldNum == 2 { + var stringLenmapvalue uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapvalue |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapvalue := int(stringLenmapvalue) + if intStringLenmapvalue < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapvalue := iNdEx + intStringLenmapvalue + if postStringIndexmapvalue < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapvalue > l { + return io.ErrUnexpectedEOF + } + mapvalue = string(dAtA[iNdEx:postStringIndexmapvalue]) + iNdEx = postStringIndexmapvalue + } else { + iNdEx = entryPreIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > postIndex { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + m.Annotations[mapkey] = mapvalue + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Namespace", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Namespace = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *ImageReviewStatus) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ImageReviewStatus: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ImageReviewStatus: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Allowed", wireType) + } + var v int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.Allowed = bool(v != 0) + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Reason", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Reason = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field AuditAnnotations", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.AuditAnnotations == nil { + m.AuditAnnotations = make(map[string]string) + } + var mapkey string + var mapvalue string + for iNdEx < postIndex { + entryPreIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + if fieldNum == 1 { + var stringLenmapkey uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapkey |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapkey := int(stringLenmapkey) + if intStringLenmapkey < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapkey := iNdEx + intStringLenmapkey + if postStringIndexmapkey < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapkey > l { + return io.ErrUnexpectedEOF + } + mapkey = string(dAtA[iNdEx:postStringIndexmapkey]) + iNdEx = postStringIndexmapkey + } else if fieldNum == 2 { + var stringLenmapvalue uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapvalue |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapvalue := int(stringLenmapvalue) + if intStringLenmapvalue < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapvalue := iNdEx + intStringLenmapvalue + if postStringIndexmapvalue < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapvalue > l { + return io.ErrUnexpectedEOF + } + mapvalue = string(dAtA[iNdEx:postStringIndexmapvalue]) + iNdEx = postStringIndexmapvalue + } else { + iNdEx = entryPreIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > postIndex { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + m.AuditAnnotations[mapkey] = mapvalue + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func skipGenerated(dAtA []byte) (n int, err error) { + l := len(dAtA) + iNdEx := 0 + depth := 0 + for iNdEx < l { + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return 0, ErrIntOverflowGenerated + } + if iNdEx >= l { + return 0, io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= (uint64(b) & 0x7F) << shift + if b < 0x80 { + break + } + } + wireType := int(wire & 0x7) + switch wireType { + case 0: + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return 0, ErrIntOverflowGenerated + } + if iNdEx >= l { + return 0, io.ErrUnexpectedEOF + } + iNdEx++ + if dAtA[iNdEx-1] < 0x80 { + break + } + } + case 1: + iNdEx += 8 + case 2: + var length int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return 0, ErrIntOverflowGenerated + } + if iNdEx >= l { + return 0, io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + length |= (int(b) & 0x7F) << shift + if b < 0x80 { + break + } + } + if length < 0 { + return 0, ErrInvalidLengthGenerated + } + iNdEx += length + case 3: + depth++ + case 4: + if depth == 0 { + return 0, ErrUnexpectedEndOfGroupGenerated + } + depth-- + case 5: + iNdEx += 4 + default: + return 0, fmt.Errorf("proto: illegal wireType %d", wireType) + } + if iNdEx < 0 { + return 0, ErrInvalidLengthGenerated + } + if depth == 0 { + return iNdEx, nil + } + } + return 0, io.ErrUnexpectedEOF +} + +var ( + ErrInvalidLengthGenerated = fmt.Errorf("proto: negative length found during unmarshaling") + ErrIntOverflowGenerated = fmt.Errorf("proto: integer overflow") + ErrUnexpectedEndOfGroupGenerated = fmt.Errorf("proto: unexpected end of group") +) diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/generated.proto b/vendor/k8s.io/api/imagepolicy/v1alpha1/generated.proto new file mode 100644 index 00000000..5ea5c0ec --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/generated.proto @@ -0,0 +1,89 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + + +// This file was autogenerated by go-to-protobuf. Do not edit it manually! + +syntax = "proto2"; + +package k8s.io.api.imagepolicy.v1alpha1; + +import "k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto"; +import "k8s.io/apimachinery/pkg/runtime/generated.proto"; +import "k8s.io/apimachinery/pkg/runtime/schema/generated.proto"; + +// Package-wide variables from generator "generated". +option go_package = "k8s.io/api/imagepolicy/v1alpha1"; + +// ImageReview checks if the set of images in a pod are allowed. +message ImageReview { + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + + // Spec holds information about the pod being evaluated + optional ImageReviewSpec spec = 2; + + // Status is filled in by the backend and indicates whether the pod should be allowed. + // +optional + optional ImageReviewStatus status = 3; +} + +// ImageReviewContainerSpec is a description of a container within the pod creation request. +message ImageReviewContainerSpec { + // This can be in the form image:tag or image@SHA:012345679abcdef. + // +optional + optional string image = 1; +} + +// ImageReviewSpec is a description of the pod creation request. +message ImageReviewSpec { + // Containers is a list of a subset of the information in each container of the Pod being created. + // +optional + // +listType=atomic + repeated ImageReviewContainerSpec containers = 1; + + // Annotations is a list of key-value pairs extracted from the Pod's annotations. + // It only includes keys which match the pattern `*.image-policy.k8s.io/*`. + // It is up to each webhook backend to determine how to interpret these annotations, if at all. + // +optional + map annotations = 2; + + // Namespace is the namespace the pod is being created in. + // +optional + optional string namespace = 3; +} + +// ImageReviewStatus is the result of the review for the pod creation request. +message ImageReviewStatus { + // Allowed indicates that all images were allowed to be run. + optional bool allowed = 1; + + // Reason should be empty unless Allowed is false in which case it + // may contain a short description of what is wrong. Kubernetes + // may truncate excessively long errors when displaying to the user. + // +optional + optional string reason = 2; + + // AuditAnnotations will be added to the attributes object of the + // admission controller request using 'AddAnnotation'. The keys should + // be prefix-less (i.e., the admission controller will add an + // appropriate prefix). + // +optional + map auditAnnotations = 3; +} + diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/register.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/register.go new file mode 100644 index 00000000..477571bb --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/register.go @@ -0,0 +1,51 @@ +/* +Copyright 2016 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package v1alpha1 + +import ( + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" + "k8s.io/apimachinery/pkg/runtime" + "k8s.io/apimachinery/pkg/runtime/schema" +) + +// GroupName is the group name for this API. +const GroupName = "imagepolicy.k8s.io" + +// SchemeGroupVersion is group version used to register these objects +var SchemeGroupVersion = schema.GroupVersion{Group: GroupName, Version: "v1alpha1"} + +// Resource takes an unqualified resource and returns a Group qualified GroupResource +func Resource(resource string) schema.GroupResource { + return SchemeGroupVersion.WithResource(resource).GroupResource() +} + +var ( + // TODO: move SchemeBuilder with zz_generated.deepcopy.go to k8s.io/api. + // localSchemeBuilder and AddToScheme will stay in k8s.io/kubernetes. + SchemeBuilder = runtime.NewSchemeBuilder(addKnownTypes) + localSchemeBuilder = &SchemeBuilder + AddToScheme = localSchemeBuilder.AddToScheme +) + +// Adds the list of known types to the given scheme. +func addKnownTypes(scheme *runtime.Scheme) error { + scheme.AddKnownTypes(SchemeGroupVersion, + &ImageReview{}, + ) + metav1.AddToGroupVersion(scheme, SchemeGroupVersion) + return nil +} diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/types.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/types.go new file mode 100644 index 00000000..19ac2b53 --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/types.go @@ -0,0 +1,83 @@ +/* +Copyright 2016 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package v1alpha1 + +import ( + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" +) + +// +genclient +// +genclient:nonNamespaced +// +genclient:noVerbs +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object + +// ImageReview checks if the set of images in a pod are allowed. +type ImageReview struct { + metav1.TypeMeta `json:",inline"` + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ObjectMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + + // Spec holds information about the pod being evaluated + Spec ImageReviewSpec `json:"spec" protobuf:"bytes,2,opt,name=spec"` + + // Status is filled in by the backend and indicates whether the pod should be allowed. + // +optional + Status ImageReviewStatus `json:"status,omitempty" protobuf:"bytes,3,opt,name=status"` +} + +// ImageReviewSpec is a description of the pod creation request. +type ImageReviewSpec struct { + // Containers is a list of a subset of the information in each container of the Pod being created. + // +optional + // +listType=atomic + Containers []ImageReviewContainerSpec `json:"containers,omitempty" protobuf:"bytes,1,rep,name=containers"` + // Annotations is a list of key-value pairs extracted from the Pod's annotations. + // It only includes keys which match the pattern `*.image-policy.k8s.io/*`. + // It is up to each webhook backend to determine how to interpret these annotations, if at all. + // +optional + Annotations map[string]string `json:"annotations,omitempty" protobuf:"bytes,2,rep,name=annotations"` + // Namespace is the namespace the pod is being created in. + // +optional + Namespace string `json:"namespace,omitempty" protobuf:"bytes,3,opt,name=namespace"` +} + +// ImageReviewContainerSpec is a description of a container within the pod creation request. +type ImageReviewContainerSpec struct { + // This can be in the form image:tag or image@SHA:012345679abcdef. + // +optional + Image string `json:"image,omitempty" protobuf:"bytes,1,opt,name=image"` + // In future, we may add command line overrides, exec health check command lines, and so on. +} + +// ImageReviewStatus is the result of the review for the pod creation request. +type ImageReviewStatus struct { + // Allowed indicates that all images were allowed to be run. + Allowed bool `json:"allowed" protobuf:"varint,1,opt,name=allowed"` + // Reason should be empty unless Allowed is false in which case it + // may contain a short description of what is wrong. Kubernetes + // may truncate excessively long errors when displaying to the user. + // +optional + Reason string `json:"reason,omitempty" protobuf:"bytes,2,opt,name=reason"` + // AuditAnnotations will be added to the attributes object of the + // admission controller request using 'AddAnnotation'. The keys should + // be prefix-less (i.e., the admission controller will add an + // appropriate prefix). + // +optional + AuditAnnotations map[string]string `json:"auditAnnotations,omitempty" protobuf:"bytes,3,rep,name=auditAnnotations"` +} diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/types_swagger_doc_generated.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/types_swagger_doc_generated.go new file mode 100644 index 00000000..dadf95e1 --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/types_swagger_doc_generated.go @@ -0,0 +1,72 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package v1alpha1 + +// This file contains a collection of methods that can be used from go-restful to +// generate Swagger API documentation for its models. Please read this PR for more +// information on the implementation: https://github.com/emicklei/go-restful/pull/215 +// +// TODOs are ignored from the parser (e.g. TODO(andronat):... || TODO:...) if and only if +// they are on one line! For multiple line or blocks that you want to ignore use ---. +// Any context after a --- is ignored. +// +// Those methods can be generated by using hack/update-codegen.sh + +// AUTO-GENERATED FUNCTIONS START HERE. DO NOT EDIT. +var map_ImageReview = map[string]string{ + "": "ImageReview checks if the set of images in a pod are allowed.", + "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "spec": "Spec holds information about the pod being evaluated", + "status": "Status is filled in by the backend and indicates whether the pod should be allowed.", +} + +func (ImageReview) SwaggerDoc() map[string]string { + return map_ImageReview +} + +var map_ImageReviewContainerSpec = map[string]string{ + "": "ImageReviewContainerSpec is a description of a container within the pod creation request.", + "image": "This can be in the form image:tag or image@SHA:012345679abcdef.", +} + +func (ImageReviewContainerSpec) SwaggerDoc() map[string]string { + return map_ImageReviewContainerSpec +} + +var map_ImageReviewSpec = map[string]string{ + "": "ImageReviewSpec is a description of the pod creation request.", + "containers": "Containers is a list of a subset of the information in each container of the Pod being created.", + "annotations": "Annotations is a list of key-value pairs extracted from the Pod's annotations. It only includes keys which match the pattern `*.image-policy.k8s.io/*`. It is up to each webhook backend to determine how to interpret these annotations, if at all.", + "namespace": "Namespace is the namespace the pod is being created in.", +} + +func (ImageReviewSpec) SwaggerDoc() map[string]string { + return map_ImageReviewSpec +} + +var map_ImageReviewStatus = map[string]string{ + "": "ImageReviewStatus is the result of the review for the pod creation request.", + "allowed": "Allowed indicates that all images were allowed to be run.", + "reason": "Reason should be empty unless Allowed is false in which case it may contain a short description of what is wrong. Kubernetes may truncate excessively long errors when displaying to the user.", + "auditAnnotations": "AuditAnnotations will be added to the attributes object of the admission controller request using 'AddAnnotation'. The keys should be prefix-less (i.e., the admission controller will add an appropriate prefix).", +} + +func (ImageReviewStatus) SwaggerDoc() map[string]string { + return map_ImageReviewStatus +} + +// AUTO-GENERATED FUNCTIONS END HERE diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/zz_generated.deepcopy.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/zz_generated.deepcopy.go new file mode 100644 index 00000000..f230656f --- /dev/null +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/zz_generated.deepcopy.go @@ -0,0 +1,121 @@ +//go:build !ignore_autogenerated +// +build !ignore_autogenerated + +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by deepcopy-gen. DO NOT EDIT. + +package v1alpha1 + +import ( + runtime "k8s.io/apimachinery/pkg/runtime" +) + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ImageReview) DeepCopyInto(out *ImageReview) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ObjectMeta.DeepCopyInto(&out.ObjectMeta) + in.Spec.DeepCopyInto(&out.Spec) + in.Status.DeepCopyInto(&out.Status) + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ImageReview. +func (in *ImageReview) DeepCopy() *ImageReview { + if in == nil { + return nil + } + out := new(ImageReview) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *ImageReview) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ImageReviewContainerSpec) DeepCopyInto(out *ImageReviewContainerSpec) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ImageReviewContainerSpec. +func (in *ImageReviewContainerSpec) DeepCopy() *ImageReviewContainerSpec { + if in == nil { + return nil + } + out := new(ImageReviewContainerSpec) + in.DeepCopyInto(out) + return out +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ImageReviewSpec) DeepCopyInto(out *ImageReviewSpec) { + *out = *in + if in.Containers != nil { + in, out := &in.Containers, &out.Containers + *out = make([]ImageReviewContainerSpec, len(*in)) + copy(*out, *in) + } + if in.Annotations != nil { + in, out := &in.Annotations, &out.Annotations + *out = make(map[string]string, len(*in)) + for key, val := range *in { + (*out)[key] = val + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ImageReviewSpec. +func (in *ImageReviewSpec) DeepCopy() *ImageReviewSpec { + if in == nil { + return nil + } + out := new(ImageReviewSpec) + in.DeepCopyInto(out) + return out +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ImageReviewStatus) DeepCopyInto(out *ImageReviewStatus) { + *out = *in + if in.AuditAnnotations != nil { + in, out := &in.AuditAnnotations, &out.AuditAnnotations + *out = make(map[string]string, len(*in)) + for key, val := range *in { + (*out)[key] = val + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ImageReviewStatus. +func (in *ImageReviewStatus) DeepCopy() *ImageReviewStatus { + if in == nil { + return nil + } + out := new(ImageReviewStatus) + in.DeepCopyInto(out) + return out +} diff --git a/vendor/k8s.io/apimachinery/pkg/util/rand/rand.go b/vendor/k8s.io/apimachinery/pkg/util/rand/rand.go new file mode 100644 index 00000000..82a473bb --- /dev/null +++ b/vendor/k8s.io/apimachinery/pkg/util/rand/rand.go @@ -0,0 +1,127 @@ +/* +Copyright 2015 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Package rand provides utilities related to randomization. +package rand + +import ( + "math/rand" + "sync" + "time" +) + +var rng = struct { + sync.Mutex + rand *rand.Rand +}{ + rand: rand.New(rand.NewSource(time.Now().UnixNano())), +} + +// Int returns a non-negative pseudo-random int. +func Int() int { + rng.Lock() + defer rng.Unlock() + return rng.rand.Int() +} + +// Intn generates an integer in range [0,max). +// By design this should panic if input is invalid, <= 0. +func Intn(max int) int { + rng.Lock() + defer rng.Unlock() + return rng.rand.Intn(max) +} + +// IntnRange generates an integer in range [min,max). +// By design this should panic if input is invalid, <= 0. +func IntnRange(min, max int) int { + rng.Lock() + defer rng.Unlock() + return rng.rand.Intn(max-min) + min +} + +// IntnRange generates an int64 integer in range [min,max). +// By design this should panic if input is invalid, <= 0. +func Int63nRange(min, max int64) int64 { + rng.Lock() + defer rng.Unlock() + return rng.rand.Int63n(max-min) + min +} + +// Seed seeds the rng with the provided seed. +func Seed(seed int64) { + rng.Lock() + defer rng.Unlock() + + rng.rand = rand.New(rand.NewSource(seed)) +} + +// Perm returns, as a slice of n ints, a pseudo-random permutation of the integers [0,n) +// from the default Source. +func Perm(n int) []int { + rng.Lock() + defer rng.Unlock() + return rng.rand.Perm(n) +} + +const ( + // We omit vowels from the set of available characters to reduce the chances + // of "bad words" being formed. + alphanums = "bcdfghjklmnpqrstvwxz2456789" + // No. of bits required to index into alphanums string. + alphanumsIdxBits = 5 + // Mask used to extract last alphanumsIdxBits of an int. + alphanumsIdxMask = 1<>= alphanumsIdxBits + remaining-- + } + return string(b) +} + +// SafeEncodeString encodes s using the same characters as rand.String. This reduces the chances of bad words and +// ensures that strings generated from hash functions appear consistent throughout the API. +func SafeEncodeString(s string) string { + r := make([]byte, len(s)) + for i, b := range []rune(s) { + r[i] = alphanums[(int(b) % len(alphanums))] + } + return string(r) +} diff --git a/vendor/k8s.io/client-go/applyconfigurations/OWNERS b/vendor/k8s.io/client-go/applyconfigurations/OWNERS new file mode 100644 index 00000000..de4067fd --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/OWNERS @@ -0,0 +1,6 @@ +# See the OWNERS docs at https://go.k8s.io/owners + +approvers: + - apelisse + - jpbetz + - api-approvers diff --git a/vendor/k8s.io/client-go/applyconfigurations/doc.go b/vendor/k8s.io/client-go/applyconfigurations/doc.go new file mode 100644 index 00000000..a28b4c0e --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/doc.go @@ -0,0 +1,150 @@ +/* +Copyright 2021 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +/* +Package applyconfigurations provides typesafe go representations of the apply +configurations that are used to constructs Server-side Apply requests. + +# Basics + +The Apply functions in the typed client (see the k8s.io/client-go/kubernetes/typed packages) offer +a direct and typesafe way of calling Server-side Apply. Each Apply function takes an "apply +configuration" type as an argument, which is a structured representation of an Apply request. For +example: + + import ( + ... + v1ac "k8s.io/client-go/applyconfigurations/autoscaling/v1" + ) + hpaApplyConfig := v1ac.HorizontalPodAutoscaler(autoscalerName, ns). + WithSpec(v1ac.HorizontalPodAutoscalerSpec(). + WithMinReplicas(0) + ) + return hpav1client.Apply(ctx, hpaApplyConfig, metav1.ApplyOptions{FieldManager: "mycontroller", Force: true}) + +Note in this example that HorizontalPodAutoscaler is imported from an "applyconfigurations" +package. Each "apply configuration" type represents the same Kubernetes object kind as the +corresponding go struct, but where all fields are pointers to make them optional, allowing apply +requests to be accurately represented. For example, this when the apply configuration in the above +example is marshalled to YAML, it produces: + + apiVersion: autoscaling/v1 + kind: HorizontalPodAutoscaler + metadata: + name: myHPA + namespace: myNamespace + spec: + minReplicas: 0 + +To understand why this is needed, the above YAML cannot be produced by the +v1.HorizontalPodAutoscaler go struct. Take for example: + + hpa := v1.HorizontalPodAutoscaler{ + TypeMeta: metav1.TypeMeta{ + APIVersion: "autoscaling/v1", + Kind: "HorizontalPodAutoscaler", + }, + ObjectMeta: ObjectMeta{ + Namespace: ns, + Name: autoscalerName, + }, + Spec: v1.HorizontalPodAutoscalerSpec{ + MinReplicas: pointer.Int32Ptr(0), + }, + } + +The above code attempts to declare the same apply configuration as shown in the previous examples, +but when marshalled to YAML, produces: + + kind: HorizontalPodAutoscaler + apiVersion: autoscaling/v1 + metadata: + name: myHPA + namespace: myNamespace + spec: + scaleTargetRef: + kind: "" + name: "" + minReplicas: 0 + maxReplicas: 0 + +Which, among other things, contains spec.maxReplicas set to 0. This is almost certainly not what +the caller intended (the intended apply configuration says nothing about the maxReplicas field), +and could have serious consequences on a production system: it directs the autoscaler to downscale +to zero pods. The problem here originates from the fact that the go structs contain required fields +that are zero valued if not set explicitly. The go structs work as intended for create and update +operations, but are fundamentally incompatible with apply, which is why we have introduced the +generated "apply configuration" types. + +The "apply configurations" also have convenience With functions that make it easier to +build apply requests. This allows developers to set fields without having to deal with the fact that +all the fields in the "apply configuration" types are pointers, and are inconvenient to set using +go. For example "MinReplicas: &0" is not legal go code, so without the With functions, developers +would work around this problem by using a library, .e.g. "MinReplicas: pointer.Int32Ptr(0)", but +string enumerations like corev1.Protocol are still a problem since they cannot be supported by a +general purpose library. In addition to the convenience, the With functions also isolate +developers from the underlying representation, which makes it safer for the underlying +representation to be changed to support additional features in the future. + +# Controller Support + +The new client-go support makes it much easier to use Server-side Apply in controllers, by either of +two mechanisms. + +Mechanism 1: + +When authoring new controllers to use Server-side Apply, a good approach is to have the controller +recreate the apply configuration for an object each time it reconciles that object. This ensures +that the controller fully reconciles all the fields that it is responsible for. Controllers +typically should unconditionally set all the fields they own by setting "Force: true" in the +ApplyOptions. Controllers must also provide a FieldManager name that is unique to the +reconciliation loop that apply is called from. + +When upgrading existing controllers to use Server-side Apply the same approach often works +well--migrate the controllers to recreate the apply configuration each time it reconciles any +object. For cases where this does not work well, see Mechanism 2. + +Mechanism 2: + +When upgrading existing controllers to use Server-side Apply, the controller might have multiple +code paths that update different parts of an object depending on various conditions. Migrating a +controller like this to Server-side Apply can be risky because if the controller forgets to include +any fields in an apply configuration that is included in a previous apply request, a field can be +accidentally deleted. For such cases, an alternative to mechanism 1 is to replace any controller +reconciliation code that performs a "read/modify-in-place/update" (or patch) workflow with a +"extract/modify-in-place/apply" workflow. Here's an example of the new workflow: + + fieldMgr := "my-field-manager" + deploymentClient := clientset.AppsV1().Deployments("default") + // read, could also be read from a shared informer + deployment, err := deploymentClient.Get(ctx, "example-deployment", metav1.GetOptions{}) + if err != nil { + // handle error + } + // extract + deploymentApplyConfig, err := appsv1ac.ExtractDeployment(deployment, fieldMgr) + if err != nil { + // handle error + } + // modify-in-place + deploymentApplyConfig.Spec.Template.Spec.WithContainers(corev1ac.Container(). + WithName("modify-slice"). + WithImage("nginx:1.14.2"), + ) + // apply + applied, err := deploymentClient.Apply(ctx, extractedDeployment, metav1.ApplyOptions{FieldManager: fieldMgr}) +*/ +package applyconfigurations diff --git a/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereview.go b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereview.go new file mode 100644 index 00000000..0d428e06 --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereview.go @@ -0,0 +1,279 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by applyconfiguration-gen. DO NOT EDIT. + +package v1alpha1 + +import ( + imagepolicyv1alpha1 "k8s.io/api/imagepolicy/v1alpha1" + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" + types "k8s.io/apimachinery/pkg/types" + managedfields "k8s.io/apimachinery/pkg/util/managedfields" + internal "k8s.io/client-go/applyconfigurations/internal" + v1 "k8s.io/client-go/applyconfigurations/meta/v1" +) + +// ImageReviewApplyConfiguration represents a declarative configuration of the ImageReview type for use +// with apply. +type ImageReviewApplyConfiguration struct { + v1.TypeMetaApplyConfiguration `json:",inline"` + *v1.ObjectMetaApplyConfiguration `json:"metadata,omitempty"` + Spec *ImageReviewSpecApplyConfiguration `json:"spec,omitempty"` + Status *ImageReviewStatusApplyConfiguration `json:"status,omitempty"` +} + +// ImageReview constructs a declarative configuration of the ImageReview type for use with +// apply. +func ImageReview(name string) *ImageReviewApplyConfiguration { + b := &ImageReviewApplyConfiguration{} + b.WithName(name) + b.WithKind("ImageReview") + b.WithAPIVersion("imagepolicy.k8s.io/v1alpha1") + return b +} + +// ExtractImageReview extracts the applied configuration owned by fieldManager from +// imageReview. If no managedFields are found in imageReview for fieldManager, a +// ImageReviewApplyConfiguration is returned with only the Name, Namespace (if applicable), +// APIVersion and Kind populated. It is possible that no managed fields were found for because other +// field managers have taken ownership of all the fields previously owned by fieldManager, or because +// the fieldManager never owned fields any fields. +// imageReview must be a unmodified ImageReview API object that was retrieved from the Kubernetes API. +// ExtractImageReview provides a way to perform a extract/modify-in-place/apply workflow. +// Note that an extracted apply configuration will contain fewer fields than what the fieldManager previously +// applied if another fieldManager has updated or force applied any of the previously applied fields. +// Experimental! +func ExtractImageReview(imageReview *imagepolicyv1alpha1.ImageReview, fieldManager string) (*ImageReviewApplyConfiguration, error) { + return extractImageReview(imageReview, fieldManager, "") +} + +// ExtractImageReviewStatus is the same as ExtractImageReview except +// that it extracts the status subresource applied configuration. +// Experimental! +func ExtractImageReviewStatus(imageReview *imagepolicyv1alpha1.ImageReview, fieldManager string) (*ImageReviewApplyConfiguration, error) { + return extractImageReview(imageReview, fieldManager, "status") +} + +func extractImageReview(imageReview *imagepolicyv1alpha1.ImageReview, fieldManager string, subresource string) (*ImageReviewApplyConfiguration, error) { + b := &ImageReviewApplyConfiguration{} + err := managedfields.ExtractInto(imageReview, internal.Parser().Type("io.k8s.api.imagepolicy.v1alpha1.ImageReview"), fieldManager, b, subresource) + if err != nil { + return nil, err + } + b.WithName(imageReview.Name) + + b.WithKind("ImageReview") + b.WithAPIVersion("imagepolicy.k8s.io/v1alpha1") + return b, nil +} +func (b ImageReviewApplyConfiguration) IsApplyConfiguration() {} + +// WithKind sets the Kind field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Kind field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithKind(value string) *ImageReviewApplyConfiguration { + b.TypeMetaApplyConfiguration.Kind = &value + return b +} + +// WithAPIVersion sets the APIVersion field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the APIVersion field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithAPIVersion(value string) *ImageReviewApplyConfiguration { + b.TypeMetaApplyConfiguration.APIVersion = &value + return b +} + +// WithName sets the Name field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Name field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithName(value string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.Name = &value + return b +} + +// WithGenerateName sets the GenerateName field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the GenerateName field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithGenerateName(value string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.GenerateName = &value + return b +} + +// WithNamespace sets the Namespace field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Namespace field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithNamespace(value string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.Namespace = &value + return b +} + +// WithUID sets the UID field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the UID field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithUID(value types.UID) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.UID = &value + return b +} + +// WithResourceVersion sets the ResourceVersion field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the ResourceVersion field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithResourceVersion(value string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.ResourceVersion = &value + return b +} + +// WithGeneration sets the Generation field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Generation field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithGeneration(value int64) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.Generation = &value + return b +} + +// WithCreationTimestamp sets the CreationTimestamp field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the CreationTimestamp field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithCreationTimestamp(value metav1.Time) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.CreationTimestamp = &value + return b +} + +// WithDeletionTimestamp sets the DeletionTimestamp field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the DeletionTimestamp field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithDeletionTimestamp(value metav1.Time) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.DeletionTimestamp = &value + return b +} + +// WithDeletionGracePeriodSeconds sets the DeletionGracePeriodSeconds field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the DeletionGracePeriodSeconds field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithDeletionGracePeriodSeconds(value int64) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + b.ObjectMetaApplyConfiguration.DeletionGracePeriodSeconds = &value + return b +} + +// WithLabels puts the entries into the Labels field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, the entries provided by each call will be put on the Labels field, +// overwriting an existing map entries in Labels field with the same key. +func (b *ImageReviewApplyConfiguration) WithLabels(entries map[string]string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + if b.ObjectMetaApplyConfiguration.Labels == nil && len(entries) > 0 { + b.ObjectMetaApplyConfiguration.Labels = make(map[string]string, len(entries)) + } + for k, v := range entries { + b.ObjectMetaApplyConfiguration.Labels[k] = v + } + return b +} + +// WithAnnotations puts the entries into the Annotations field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, the entries provided by each call will be put on the Annotations field, +// overwriting an existing map entries in Annotations field with the same key. +func (b *ImageReviewApplyConfiguration) WithAnnotations(entries map[string]string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + if b.ObjectMetaApplyConfiguration.Annotations == nil && len(entries) > 0 { + b.ObjectMetaApplyConfiguration.Annotations = make(map[string]string, len(entries)) + } + for k, v := range entries { + b.ObjectMetaApplyConfiguration.Annotations[k] = v + } + return b +} + +// WithOwnerReferences adds the given value to the OwnerReferences field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, values provided by each call will be appended to the OwnerReferences field. +func (b *ImageReviewApplyConfiguration) WithOwnerReferences(values ...*v1.OwnerReferenceApplyConfiguration) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + for i := range values { + if values[i] == nil { + panic("nil value passed to WithOwnerReferences") + } + b.ObjectMetaApplyConfiguration.OwnerReferences = append(b.ObjectMetaApplyConfiguration.OwnerReferences, *values[i]) + } + return b +} + +// WithFinalizers adds the given value to the Finalizers field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, values provided by each call will be appended to the Finalizers field. +func (b *ImageReviewApplyConfiguration) WithFinalizers(values ...string) *ImageReviewApplyConfiguration { + b.ensureObjectMetaApplyConfigurationExists() + for i := range values { + b.ObjectMetaApplyConfiguration.Finalizers = append(b.ObjectMetaApplyConfiguration.Finalizers, values[i]) + } + return b +} + +func (b *ImageReviewApplyConfiguration) ensureObjectMetaApplyConfigurationExists() { + if b.ObjectMetaApplyConfiguration == nil { + b.ObjectMetaApplyConfiguration = &v1.ObjectMetaApplyConfiguration{} + } +} + +// WithSpec sets the Spec field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Spec field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithSpec(value *ImageReviewSpecApplyConfiguration) *ImageReviewApplyConfiguration { + b.Spec = value + return b +} + +// WithStatus sets the Status field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Status field is set to the value of the last call. +func (b *ImageReviewApplyConfiguration) WithStatus(value *ImageReviewStatusApplyConfiguration) *ImageReviewApplyConfiguration { + b.Status = value + return b +} + +// GetKind retrieves the value of the Kind field in the declarative configuration. +func (b *ImageReviewApplyConfiguration) GetKind() *string { + return b.TypeMetaApplyConfiguration.Kind +} + +// GetAPIVersion retrieves the value of the APIVersion field in the declarative configuration. +func (b *ImageReviewApplyConfiguration) GetAPIVersion() *string { + return b.TypeMetaApplyConfiguration.APIVersion +} + +// GetName retrieves the value of the Name field in the declarative configuration. +func (b *ImageReviewApplyConfiguration) GetName() *string { + b.ensureObjectMetaApplyConfigurationExists() + return b.ObjectMetaApplyConfiguration.Name +} + +// GetNamespace retrieves the value of the Namespace field in the declarative configuration. +func (b *ImageReviewApplyConfiguration) GetNamespace() *string { + b.ensureObjectMetaApplyConfigurationExists() + return b.ObjectMetaApplyConfiguration.Namespace +} diff --git a/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewcontainerspec.go b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewcontainerspec.go new file mode 100644 index 00000000..adfdb325 --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewcontainerspec.go @@ -0,0 +1,39 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by applyconfiguration-gen. DO NOT EDIT. + +package v1alpha1 + +// ImageReviewContainerSpecApplyConfiguration represents a declarative configuration of the ImageReviewContainerSpec type for use +// with apply. +type ImageReviewContainerSpecApplyConfiguration struct { + Image *string `json:"image,omitempty"` +} + +// ImageReviewContainerSpecApplyConfiguration constructs a declarative configuration of the ImageReviewContainerSpec type for use with +// apply. +func ImageReviewContainerSpec() *ImageReviewContainerSpecApplyConfiguration { + return &ImageReviewContainerSpecApplyConfiguration{} +} + +// WithImage sets the Image field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Image field is set to the value of the last call. +func (b *ImageReviewContainerSpecApplyConfiguration) WithImage(value string) *ImageReviewContainerSpecApplyConfiguration { + b.Image = &value + return b +} diff --git a/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewspec.go b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewspec.go new file mode 100644 index 00000000..7efc36a3 --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewspec.go @@ -0,0 +1,68 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by applyconfiguration-gen. DO NOT EDIT. + +package v1alpha1 + +// ImageReviewSpecApplyConfiguration represents a declarative configuration of the ImageReviewSpec type for use +// with apply. +type ImageReviewSpecApplyConfiguration struct { + Containers []ImageReviewContainerSpecApplyConfiguration `json:"containers,omitempty"` + Annotations map[string]string `json:"annotations,omitempty"` + Namespace *string `json:"namespace,omitempty"` +} + +// ImageReviewSpecApplyConfiguration constructs a declarative configuration of the ImageReviewSpec type for use with +// apply. +func ImageReviewSpec() *ImageReviewSpecApplyConfiguration { + return &ImageReviewSpecApplyConfiguration{} +} + +// WithContainers adds the given value to the Containers field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, values provided by each call will be appended to the Containers field. +func (b *ImageReviewSpecApplyConfiguration) WithContainers(values ...*ImageReviewContainerSpecApplyConfiguration) *ImageReviewSpecApplyConfiguration { + for i := range values { + if values[i] == nil { + panic("nil value passed to WithContainers") + } + b.Containers = append(b.Containers, *values[i]) + } + return b +} + +// WithAnnotations puts the entries into the Annotations field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, the entries provided by each call will be put on the Annotations field, +// overwriting an existing map entries in Annotations field with the same key. +func (b *ImageReviewSpecApplyConfiguration) WithAnnotations(entries map[string]string) *ImageReviewSpecApplyConfiguration { + if b.Annotations == nil && len(entries) > 0 { + b.Annotations = make(map[string]string, len(entries)) + } + for k, v := range entries { + b.Annotations[k] = v + } + return b +} + +// WithNamespace sets the Namespace field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Namespace field is set to the value of the last call. +func (b *ImageReviewSpecApplyConfiguration) WithNamespace(value string) *ImageReviewSpecApplyConfiguration { + b.Namespace = &value + return b +} diff --git a/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewstatus.go b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewstatus.go new file mode 100644 index 00000000..e26a427e --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1/imagereviewstatus.go @@ -0,0 +1,63 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by applyconfiguration-gen. DO NOT EDIT. + +package v1alpha1 + +// ImageReviewStatusApplyConfiguration represents a declarative configuration of the ImageReviewStatus type for use +// with apply. +type ImageReviewStatusApplyConfiguration struct { + Allowed *bool `json:"allowed,omitempty"` + Reason *string `json:"reason,omitempty"` + AuditAnnotations map[string]string `json:"auditAnnotations,omitempty"` +} + +// ImageReviewStatusApplyConfiguration constructs a declarative configuration of the ImageReviewStatus type for use with +// apply. +func ImageReviewStatus() *ImageReviewStatusApplyConfiguration { + return &ImageReviewStatusApplyConfiguration{} +} + +// WithAllowed sets the Allowed field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Allowed field is set to the value of the last call. +func (b *ImageReviewStatusApplyConfiguration) WithAllowed(value bool) *ImageReviewStatusApplyConfiguration { + b.Allowed = &value + return b +} + +// WithReason sets the Reason field in the declarative configuration to the given value +// and returns the receiver, so that objects can be built by chaining "With" function invocations. +// If called multiple times, the Reason field is set to the value of the last call. +func (b *ImageReviewStatusApplyConfiguration) WithReason(value string) *ImageReviewStatusApplyConfiguration { + b.Reason = &value + return b +} + +// WithAuditAnnotations puts the entries into the AuditAnnotations field in the declarative configuration +// and returns the receiver, so that objects can be build by chaining "With" function invocations. +// If called multiple times, the entries provided by each call will be put on the AuditAnnotations field, +// overwriting an existing map entries in AuditAnnotations field with the same key. +func (b *ImageReviewStatusApplyConfiguration) WithAuditAnnotations(entries map[string]string) *ImageReviewStatusApplyConfiguration { + if b.AuditAnnotations == nil && len(entries) > 0 { + b.AuditAnnotations = make(map[string]string, len(entries)) + } + for k, v := range entries { + b.AuditAnnotations[k] = v + } + return b +} diff --git a/vendor/k8s.io/client-go/applyconfigurations/utils.go b/vendor/k8s.io/client-go/applyconfigurations/utils.go new file mode 100644 index 00000000..af434668 --- /dev/null +++ b/vendor/k8s.io/client-go/applyconfigurations/utils.go @@ -0,0 +1,1994 @@ +/* +Copyright The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Code generated by applyconfiguration-gen. DO NOT EDIT. + +package applyconfigurations + +import ( + v1 "k8s.io/api/admissionregistration/v1" + v1alpha1 "k8s.io/api/admissionregistration/v1alpha1" + v1beta1 "k8s.io/api/admissionregistration/v1beta1" + apiserverinternalv1alpha1 "k8s.io/api/apiserverinternal/v1alpha1" + appsv1 "k8s.io/api/apps/v1" + appsv1beta1 "k8s.io/api/apps/v1beta1" + v1beta2 "k8s.io/api/apps/v1beta2" + autoscalingv1 "k8s.io/api/autoscaling/v1" + v2 "k8s.io/api/autoscaling/v2" + v2beta1 "k8s.io/api/autoscaling/v2beta1" + v2beta2 "k8s.io/api/autoscaling/v2beta2" + batchv1 "k8s.io/api/batch/v1" + batchv1beta1 "k8s.io/api/batch/v1beta1" + certificatesv1 "k8s.io/api/certificates/v1" + certificatesv1alpha1 "k8s.io/api/certificates/v1alpha1" + certificatesv1beta1 "k8s.io/api/certificates/v1beta1" + coordinationv1 "k8s.io/api/coordination/v1" + v1alpha2 "k8s.io/api/coordination/v1alpha2" + coordinationv1beta1 "k8s.io/api/coordination/v1beta1" + corev1 "k8s.io/api/core/v1" + discoveryv1 "k8s.io/api/discovery/v1" + discoveryv1beta1 "k8s.io/api/discovery/v1beta1" + eventsv1 "k8s.io/api/events/v1" + eventsv1beta1 "k8s.io/api/events/v1beta1" + extensionsv1beta1 "k8s.io/api/extensions/v1beta1" + flowcontrolv1 "k8s.io/api/flowcontrol/v1" + flowcontrolv1beta1 "k8s.io/api/flowcontrol/v1beta1" + flowcontrolv1beta2 "k8s.io/api/flowcontrol/v1beta2" + v1beta3 "k8s.io/api/flowcontrol/v1beta3" + imagepolicyv1alpha1 "k8s.io/api/imagepolicy/v1alpha1" + networkingv1 "k8s.io/api/networking/v1" + networkingv1beta1 "k8s.io/api/networking/v1beta1" + nodev1 "k8s.io/api/node/v1" + nodev1alpha1 "k8s.io/api/node/v1alpha1" + nodev1beta1 "k8s.io/api/node/v1beta1" + policyv1 "k8s.io/api/policy/v1" + policyv1beta1 "k8s.io/api/policy/v1beta1" + rbacv1 "k8s.io/api/rbac/v1" + rbacv1alpha1 "k8s.io/api/rbac/v1alpha1" + rbacv1beta1 "k8s.io/api/rbac/v1beta1" + resourcev1 "k8s.io/api/resource/v1" + v1alpha3 "k8s.io/api/resource/v1alpha3" + resourcev1beta1 "k8s.io/api/resource/v1beta1" + resourcev1beta2 "k8s.io/api/resource/v1beta2" + schedulingv1 "k8s.io/api/scheduling/v1" + schedulingv1alpha1 "k8s.io/api/scheduling/v1alpha1" + schedulingv1beta1 "k8s.io/api/scheduling/v1beta1" + storagev1 "k8s.io/api/storage/v1" + storagev1alpha1 "k8s.io/api/storage/v1alpha1" + storagev1beta1 "k8s.io/api/storage/v1beta1" + storagemigrationv1alpha1 "k8s.io/api/storagemigration/v1alpha1" + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" + runtime "k8s.io/apimachinery/pkg/runtime" + schema "k8s.io/apimachinery/pkg/runtime/schema" + managedfields "k8s.io/apimachinery/pkg/util/managedfields" + admissionregistrationv1 "k8s.io/client-go/applyconfigurations/admissionregistration/v1" + admissionregistrationv1alpha1 "k8s.io/client-go/applyconfigurations/admissionregistration/v1alpha1" + admissionregistrationv1beta1 "k8s.io/client-go/applyconfigurations/admissionregistration/v1beta1" + applyconfigurationsapiserverinternalv1alpha1 "k8s.io/client-go/applyconfigurations/apiserverinternal/v1alpha1" + applyconfigurationsappsv1 "k8s.io/client-go/applyconfigurations/apps/v1" + applyconfigurationsappsv1beta1 "k8s.io/client-go/applyconfigurations/apps/v1beta1" + appsv1beta2 "k8s.io/client-go/applyconfigurations/apps/v1beta2" + applyconfigurationsautoscalingv1 "k8s.io/client-go/applyconfigurations/autoscaling/v1" + autoscalingv2 "k8s.io/client-go/applyconfigurations/autoscaling/v2" + autoscalingv2beta1 "k8s.io/client-go/applyconfigurations/autoscaling/v2beta1" + autoscalingv2beta2 "k8s.io/client-go/applyconfigurations/autoscaling/v2beta2" + applyconfigurationsbatchv1 "k8s.io/client-go/applyconfigurations/batch/v1" + applyconfigurationsbatchv1beta1 "k8s.io/client-go/applyconfigurations/batch/v1beta1" + applyconfigurationscertificatesv1 "k8s.io/client-go/applyconfigurations/certificates/v1" + applyconfigurationscertificatesv1alpha1 "k8s.io/client-go/applyconfigurations/certificates/v1alpha1" + applyconfigurationscertificatesv1beta1 "k8s.io/client-go/applyconfigurations/certificates/v1beta1" + applyconfigurationscoordinationv1 "k8s.io/client-go/applyconfigurations/coordination/v1" + coordinationv1alpha2 "k8s.io/client-go/applyconfigurations/coordination/v1alpha2" + applyconfigurationscoordinationv1beta1 "k8s.io/client-go/applyconfigurations/coordination/v1beta1" + applyconfigurationscorev1 "k8s.io/client-go/applyconfigurations/core/v1" + applyconfigurationsdiscoveryv1 "k8s.io/client-go/applyconfigurations/discovery/v1" + applyconfigurationsdiscoveryv1beta1 "k8s.io/client-go/applyconfigurations/discovery/v1beta1" + applyconfigurationseventsv1 "k8s.io/client-go/applyconfigurations/events/v1" + applyconfigurationseventsv1beta1 "k8s.io/client-go/applyconfigurations/events/v1beta1" + applyconfigurationsextensionsv1beta1 "k8s.io/client-go/applyconfigurations/extensions/v1beta1" + applyconfigurationsflowcontrolv1 "k8s.io/client-go/applyconfigurations/flowcontrol/v1" + applyconfigurationsflowcontrolv1beta1 "k8s.io/client-go/applyconfigurations/flowcontrol/v1beta1" + applyconfigurationsflowcontrolv1beta2 "k8s.io/client-go/applyconfigurations/flowcontrol/v1beta2" + flowcontrolv1beta3 "k8s.io/client-go/applyconfigurations/flowcontrol/v1beta3" + applyconfigurationsimagepolicyv1alpha1 "k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1" + internal "k8s.io/client-go/applyconfigurations/internal" + applyconfigurationsmetav1 "k8s.io/client-go/applyconfigurations/meta/v1" + applyconfigurationsnetworkingv1 "k8s.io/client-go/applyconfigurations/networking/v1" + applyconfigurationsnetworkingv1beta1 "k8s.io/client-go/applyconfigurations/networking/v1beta1" + applyconfigurationsnodev1 "k8s.io/client-go/applyconfigurations/node/v1" + applyconfigurationsnodev1alpha1 "k8s.io/client-go/applyconfigurations/node/v1alpha1" + applyconfigurationsnodev1beta1 "k8s.io/client-go/applyconfigurations/node/v1beta1" + applyconfigurationspolicyv1 "k8s.io/client-go/applyconfigurations/policy/v1" + applyconfigurationspolicyv1beta1 "k8s.io/client-go/applyconfigurations/policy/v1beta1" + applyconfigurationsrbacv1 "k8s.io/client-go/applyconfigurations/rbac/v1" + applyconfigurationsrbacv1alpha1 "k8s.io/client-go/applyconfigurations/rbac/v1alpha1" + applyconfigurationsrbacv1beta1 "k8s.io/client-go/applyconfigurations/rbac/v1beta1" + applyconfigurationsresourcev1 "k8s.io/client-go/applyconfigurations/resource/v1" + resourcev1alpha3 "k8s.io/client-go/applyconfigurations/resource/v1alpha3" + applyconfigurationsresourcev1beta1 "k8s.io/client-go/applyconfigurations/resource/v1beta1" + applyconfigurationsresourcev1beta2 "k8s.io/client-go/applyconfigurations/resource/v1beta2" + applyconfigurationsschedulingv1 "k8s.io/client-go/applyconfigurations/scheduling/v1" + applyconfigurationsschedulingv1alpha1 "k8s.io/client-go/applyconfigurations/scheduling/v1alpha1" + applyconfigurationsschedulingv1beta1 "k8s.io/client-go/applyconfigurations/scheduling/v1beta1" + applyconfigurationsstoragev1 "k8s.io/client-go/applyconfigurations/storage/v1" + applyconfigurationsstoragev1alpha1 "k8s.io/client-go/applyconfigurations/storage/v1alpha1" + applyconfigurationsstoragev1beta1 "k8s.io/client-go/applyconfigurations/storage/v1beta1" + applyconfigurationsstoragemigrationv1alpha1 "k8s.io/client-go/applyconfigurations/storagemigration/v1alpha1" +) + +// ForKind returns an apply configuration type for the given GroupVersionKind, or nil if no +// apply configuration type exists for the given GroupVersionKind. +func ForKind(kind schema.GroupVersionKind) interface{} { + switch kind { + // Group=admissionregistration.k8s.io, Version=v1 + case v1.SchemeGroupVersion.WithKind("AuditAnnotation"): + return &admissionregistrationv1.AuditAnnotationApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ExpressionWarning"): + return &admissionregistrationv1.ExpressionWarningApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("MatchCondition"): + return &admissionregistrationv1.MatchConditionApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("MatchResources"): + return &admissionregistrationv1.MatchResourcesApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("MutatingWebhook"): + return &admissionregistrationv1.MutatingWebhookApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("MutatingWebhookConfiguration"): + return &admissionregistrationv1.MutatingWebhookConfigurationApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("NamedRuleWithOperations"): + return &admissionregistrationv1.NamedRuleWithOperationsApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ParamKind"): + return &admissionregistrationv1.ParamKindApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ParamRef"): + return &admissionregistrationv1.ParamRefApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("Rule"): + return &admissionregistrationv1.RuleApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("RuleWithOperations"): + return &admissionregistrationv1.RuleWithOperationsApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ServiceReference"): + return &admissionregistrationv1.ServiceReferenceApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("TypeChecking"): + return &admissionregistrationv1.TypeCheckingApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicy"): + return &admissionregistrationv1.ValidatingAdmissionPolicyApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyBinding"): + return &admissionregistrationv1.ValidatingAdmissionPolicyBindingApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyBindingSpec"): + return &admissionregistrationv1.ValidatingAdmissionPolicyBindingSpecApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicySpec"): + return &admissionregistrationv1.ValidatingAdmissionPolicySpecApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyStatus"): + return &admissionregistrationv1.ValidatingAdmissionPolicyStatusApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingWebhook"): + return &admissionregistrationv1.ValidatingWebhookApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("ValidatingWebhookConfiguration"): + return &admissionregistrationv1.ValidatingWebhookConfigurationApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("Validation"): + return &admissionregistrationv1.ValidationApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("Variable"): + return &admissionregistrationv1.VariableApplyConfiguration{} + case v1.SchemeGroupVersion.WithKind("WebhookClientConfig"): + return &admissionregistrationv1.WebhookClientConfigApplyConfiguration{} + + // Group=admissionregistration.k8s.io, Version=v1alpha1 + case v1alpha1.SchemeGroupVersion.WithKind("ApplyConfiguration"): + return &admissionregistrationv1alpha1.ApplyConfigurationApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("AuditAnnotation"): + return &admissionregistrationv1alpha1.AuditAnnotationApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ExpressionWarning"): + return &admissionregistrationv1alpha1.ExpressionWarningApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("JSONPatch"): + return &admissionregistrationv1alpha1.JSONPatchApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("MatchCondition"): + return &admissionregistrationv1alpha1.MatchConditionApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("MatchResources"): + return &admissionregistrationv1alpha1.MatchResourcesApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicy"): + return &admissionregistrationv1alpha1.MutatingAdmissionPolicyApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicyBinding"): + return &admissionregistrationv1alpha1.MutatingAdmissionPolicyBindingApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicyBindingSpec"): + return &admissionregistrationv1alpha1.MutatingAdmissionPolicyBindingSpecApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicySpec"): + return &admissionregistrationv1alpha1.MutatingAdmissionPolicySpecApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("Mutation"): + return &admissionregistrationv1alpha1.MutationApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("NamedRuleWithOperations"): + return &admissionregistrationv1alpha1.NamedRuleWithOperationsApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ParamKind"): + return &admissionregistrationv1alpha1.ParamKindApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ParamRef"): + return &admissionregistrationv1alpha1.ParamRefApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("TypeChecking"): + return &admissionregistrationv1alpha1.TypeCheckingApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicy"): + return &admissionregistrationv1alpha1.ValidatingAdmissionPolicyApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyBinding"): + return &admissionregistrationv1alpha1.ValidatingAdmissionPolicyBindingApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyBindingSpec"): + return &admissionregistrationv1alpha1.ValidatingAdmissionPolicyBindingSpecApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicySpec"): + return &admissionregistrationv1alpha1.ValidatingAdmissionPolicySpecApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyStatus"): + return &admissionregistrationv1alpha1.ValidatingAdmissionPolicyStatusApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("Validation"): + return &admissionregistrationv1alpha1.ValidationApplyConfiguration{} + case v1alpha1.SchemeGroupVersion.WithKind("Variable"): + return &admissionregistrationv1alpha1.VariableApplyConfiguration{} + + // Group=admissionregistration.k8s.io, Version=v1beta1 + case v1beta1.SchemeGroupVersion.WithKind("ApplyConfiguration"): + return &admissionregistrationv1beta1.ApplyConfigurationApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("AuditAnnotation"): + return &admissionregistrationv1beta1.AuditAnnotationApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ExpressionWarning"): + return &admissionregistrationv1beta1.ExpressionWarningApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("JSONPatch"): + return &admissionregistrationv1beta1.JSONPatchApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MatchCondition"): + return &admissionregistrationv1beta1.MatchConditionApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MatchResources"): + return &admissionregistrationv1beta1.MatchResourcesApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicy"): + return &admissionregistrationv1beta1.MutatingAdmissionPolicyApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicyBinding"): + return &admissionregistrationv1beta1.MutatingAdmissionPolicyBindingApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicyBindingSpec"): + return &admissionregistrationv1beta1.MutatingAdmissionPolicyBindingSpecApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MutatingAdmissionPolicySpec"): + return &admissionregistrationv1beta1.MutatingAdmissionPolicySpecApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MutatingWebhook"): + return &admissionregistrationv1beta1.MutatingWebhookApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("MutatingWebhookConfiguration"): + return &admissionregistrationv1beta1.MutatingWebhookConfigurationApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("Mutation"): + return &admissionregistrationv1beta1.MutationApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("NamedRuleWithOperations"): + return &admissionregistrationv1beta1.NamedRuleWithOperationsApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ParamKind"): + return &admissionregistrationv1beta1.ParamKindApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ParamRef"): + return &admissionregistrationv1beta1.ParamRefApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ServiceReference"): + return &admissionregistrationv1beta1.ServiceReferenceApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("TypeChecking"): + return &admissionregistrationv1beta1.TypeCheckingApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicy"): + return &admissionregistrationv1beta1.ValidatingAdmissionPolicyApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyBinding"): + return &admissionregistrationv1beta1.ValidatingAdmissionPolicyBindingApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyBindingSpec"): + return &admissionregistrationv1beta1.ValidatingAdmissionPolicyBindingSpecApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicySpec"): + return &admissionregistrationv1beta1.ValidatingAdmissionPolicySpecApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingAdmissionPolicyStatus"): + return &admissionregistrationv1beta1.ValidatingAdmissionPolicyStatusApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingWebhook"): + return &admissionregistrationv1beta1.ValidatingWebhookApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("ValidatingWebhookConfiguration"): + return &admissionregistrationv1beta1.ValidatingWebhookConfigurationApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("Validation"): + return &admissionregistrationv1beta1.ValidationApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("Variable"): + return &admissionregistrationv1beta1.VariableApplyConfiguration{} + case v1beta1.SchemeGroupVersion.WithKind("WebhookClientConfig"): + return &admissionregistrationv1beta1.WebhookClientConfigApplyConfiguration{} + + // Group=apps, Version=v1 + case appsv1.SchemeGroupVersion.WithKind("ControllerRevision"): + return &applyconfigurationsappsv1.ControllerRevisionApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DaemonSet"): + return &applyconfigurationsappsv1.DaemonSetApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DaemonSetCondition"): + return &applyconfigurationsappsv1.DaemonSetConditionApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DaemonSetSpec"): + return &applyconfigurationsappsv1.DaemonSetSpecApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DaemonSetStatus"): + return &applyconfigurationsappsv1.DaemonSetStatusApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DaemonSetUpdateStrategy"): + return &applyconfigurationsappsv1.DaemonSetUpdateStrategyApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("Deployment"): + return &applyconfigurationsappsv1.DeploymentApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DeploymentCondition"): + return &applyconfigurationsappsv1.DeploymentConditionApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DeploymentSpec"): + return &applyconfigurationsappsv1.DeploymentSpecApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DeploymentStatus"): + return &applyconfigurationsappsv1.DeploymentStatusApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("DeploymentStrategy"): + return &applyconfigurationsappsv1.DeploymentStrategyApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("ReplicaSet"): + return &applyconfigurationsappsv1.ReplicaSetApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("ReplicaSetCondition"): + return &applyconfigurationsappsv1.ReplicaSetConditionApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("ReplicaSetSpec"): + return &applyconfigurationsappsv1.ReplicaSetSpecApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("ReplicaSetStatus"): + return &applyconfigurationsappsv1.ReplicaSetStatusApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("RollingUpdateDaemonSet"): + return &applyconfigurationsappsv1.RollingUpdateDaemonSetApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("RollingUpdateDeployment"): + return &applyconfigurationsappsv1.RollingUpdateDeploymentApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("RollingUpdateStatefulSetStrategy"): + return &applyconfigurationsappsv1.RollingUpdateStatefulSetStrategyApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSet"): + return &applyconfigurationsappsv1.StatefulSetApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSetCondition"): + return &applyconfigurationsappsv1.StatefulSetConditionApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSetOrdinals"): + return &applyconfigurationsappsv1.StatefulSetOrdinalsApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSetPersistentVolumeClaimRetentionPolicy"): + return &applyconfigurationsappsv1.StatefulSetPersistentVolumeClaimRetentionPolicyApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSetSpec"): + return &applyconfigurationsappsv1.StatefulSetSpecApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSetStatus"): + return &applyconfigurationsappsv1.StatefulSetStatusApplyConfiguration{} + case appsv1.SchemeGroupVersion.WithKind("StatefulSetUpdateStrategy"): + return &applyconfigurationsappsv1.StatefulSetUpdateStrategyApplyConfiguration{} + + // Group=apps, Version=v1beta1 + case appsv1beta1.SchemeGroupVersion.WithKind("ControllerRevision"): + return &applyconfigurationsappsv1beta1.ControllerRevisionApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("Deployment"): + return &applyconfigurationsappsv1beta1.DeploymentApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("DeploymentCondition"): + return &applyconfigurationsappsv1beta1.DeploymentConditionApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("DeploymentSpec"): + return &applyconfigurationsappsv1beta1.DeploymentSpecApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("DeploymentStatus"): + return &applyconfigurationsappsv1beta1.DeploymentStatusApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("DeploymentStrategy"): + return &applyconfigurationsappsv1beta1.DeploymentStrategyApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("RollbackConfig"): + return &applyconfigurationsappsv1beta1.RollbackConfigApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("RollingUpdateDeployment"): + return &applyconfigurationsappsv1beta1.RollingUpdateDeploymentApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("RollingUpdateStatefulSetStrategy"): + return &applyconfigurationsappsv1beta1.RollingUpdateStatefulSetStrategyApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSet"): + return &applyconfigurationsappsv1beta1.StatefulSetApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSetCondition"): + return &applyconfigurationsappsv1beta1.StatefulSetConditionApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSetOrdinals"): + return &applyconfigurationsappsv1beta1.StatefulSetOrdinalsApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSetPersistentVolumeClaimRetentionPolicy"): + return &applyconfigurationsappsv1beta1.StatefulSetPersistentVolumeClaimRetentionPolicyApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSetSpec"): + return &applyconfigurationsappsv1beta1.StatefulSetSpecApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSetStatus"): + return &applyconfigurationsappsv1beta1.StatefulSetStatusApplyConfiguration{} + case appsv1beta1.SchemeGroupVersion.WithKind("StatefulSetUpdateStrategy"): + return &applyconfigurationsappsv1beta1.StatefulSetUpdateStrategyApplyConfiguration{} + + // Group=apps, Version=v1beta2 + case v1beta2.SchemeGroupVersion.WithKind("ControllerRevision"): + return &appsv1beta2.ControllerRevisionApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DaemonSet"): + return &appsv1beta2.DaemonSetApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DaemonSetCondition"): + return &appsv1beta2.DaemonSetConditionApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DaemonSetSpec"): + return &appsv1beta2.DaemonSetSpecApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DaemonSetStatus"): + return &appsv1beta2.DaemonSetStatusApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DaemonSetUpdateStrategy"): + return &appsv1beta2.DaemonSetUpdateStrategyApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("Deployment"): + return &appsv1beta2.DeploymentApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DeploymentCondition"): + return &appsv1beta2.DeploymentConditionApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DeploymentSpec"): + return &appsv1beta2.DeploymentSpecApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DeploymentStatus"): + return &appsv1beta2.DeploymentStatusApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("DeploymentStrategy"): + return &appsv1beta2.DeploymentStrategyApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("ReplicaSet"): + return &appsv1beta2.ReplicaSetApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("ReplicaSetCondition"): + return &appsv1beta2.ReplicaSetConditionApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("ReplicaSetSpec"): + return &appsv1beta2.ReplicaSetSpecApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("ReplicaSetStatus"): + return &appsv1beta2.ReplicaSetStatusApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("RollingUpdateDaemonSet"): + return &appsv1beta2.RollingUpdateDaemonSetApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("RollingUpdateDeployment"): + return &appsv1beta2.RollingUpdateDeploymentApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("RollingUpdateStatefulSetStrategy"): + return &appsv1beta2.RollingUpdateStatefulSetStrategyApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("Scale"): + return &appsv1beta2.ScaleApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSet"): + return &appsv1beta2.StatefulSetApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSetCondition"): + return &appsv1beta2.StatefulSetConditionApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSetOrdinals"): + return &appsv1beta2.StatefulSetOrdinalsApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSetPersistentVolumeClaimRetentionPolicy"): + return &appsv1beta2.StatefulSetPersistentVolumeClaimRetentionPolicyApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSetSpec"): + return &appsv1beta2.StatefulSetSpecApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSetStatus"): + return &appsv1beta2.StatefulSetStatusApplyConfiguration{} + case v1beta2.SchemeGroupVersion.WithKind("StatefulSetUpdateStrategy"): + return &appsv1beta2.StatefulSetUpdateStrategyApplyConfiguration{} + + // Group=autoscaling, Version=v1 + case autoscalingv1.SchemeGroupVersion.WithKind("CrossVersionObjectReference"): + return &applyconfigurationsautoscalingv1.CrossVersionObjectReferenceApplyConfiguration{} + case autoscalingv1.SchemeGroupVersion.WithKind("HorizontalPodAutoscaler"): + return &applyconfigurationsautoscalingv1.HorizontalPodAutoscalerApplyConfiguration{} + case autoscalingv1.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerSpec"): + return &applyconfigurationsautoscalingv1.HorizontalPodAutoscalerSpecApplyConfiguration{} + case autoscalingv1.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerStatus"): + return &applyconfigurationsautoscalingv1.HorizontalPodAutoscalerStatusApplyConfiguration{} + case autoscalingv1.SchemeGroupVersion.WithKind("Scale"): + return &applyconfigurationsautoscalingv1.ScaleApplyConfiguration{} + case autoscalingv1.SchemeGroupVersion.WithKind("ScaleSpec"): + return &applyconfigurationsautoscalingv1.ScaleSpecApplyConfiguration{} + case autoscalingv1.SchemeGroupVersion.WithKind("ScaleStatus"): + return &applyconfigurationsautoscalingv1.ScaleStatusApplyConfiguration{} + + // Group=autoscaling, Version=v2 + case v2.SchemeGroupVersion.WithKind("ContainerResourceMetricSource"): + return &autoscalingv2.ContainerResourceMetricSourceApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ContainerResourceMetricStatus"): + return &autoscalingv2.ContainerResourceMetricStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("CrossVersionObjectReference"): + return &autoscalingv2.CrossVersionObjectReferenceApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ExternalMetricSource"): + return &autoscalingv2.ExternalMetricSourceApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ExternalMetricStatus"): + return &autoscalingv2.ExternalMetricStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HorizontalPodAutoscaler"): + return &autoscalingv2.HorizontalPodAutoscalerApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerBehavior"): + return &autoscalingv2.HorizontalPodAutoscalerBehaviorApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerCondition"): + return &autoscalingv2.HorizontalPodAutoscalerConditionApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerSpec"): + return &autoscalingv2.HorizontalPodAutoscalerSpecApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerStatus"): + return &autoscalingv2.HorizontalPodAutoscalerStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HPAScalingPolicy"): + return &autoscalingv2.HPAScalingPolicyApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("HPAScalingRules"): + return &autoscalingv2.HPAScalingRulesApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("MetricIdentifier"): + return &autoscalingv2.MetricIdentifierApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("MetricSpec"): + return &autoscalingv2.MetricSpecApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("MetricStatus"): + return &autoscalingv2.MetricStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("MetricTarget"): + return &autoscalingv2.MetricTargetApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("MetricValueStatus"): + return &autoscalingv2.MetricValueStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ObjectMetricSource"): + return &autoscalingv2.ObjectMetricSourceApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ObjectMetricStatus"): + return &autoscalingv2.ObjectMetricStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("PodsMetricSource"): + return &autoscalingv2.PodsMetricSourceApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("PodsMetricStatus"): + return &autoscalingv2.PodsMetricStatusApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ResourceMetricSource"): + return &autoscalingv2.ResourceMetricSourceApplyConfiguration{} + case v2.SchemeGroupVersion.WithKind("ResourceMetricStatus"): + return &autoscalingv2.ResourceMetricStatusApplyConfiguration{} + + // Group=autoscaling, Version=v2beta1 + case v2beta1.SchemeGroupVersion.WithKind("ContainerResourceMetricSource"): + return &autoscalingv2beta1.ContainerResourceMetricSourceApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ContainerResourceMetricStatus"): + return &autoscalingv2beta1.ContainerResourceMetricStatusApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("CrossVersionObjectReference"): + return &autoscalingv2beta1.CrossVersionObjectReferenceApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ExternalMetricSource"): + return &autoscalingv2beta1.ExternalMetricSourceApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ExternalMetricStatus"): + return &autoscalingv2beta1.ExternalMetricStatusApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("HorizontalPodAutoscaler"): + return &autoscalingv2beta1.HorizontalPodAutoscalerApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerCondition"): + return &autoscalingv2beta1.HorizontalPodAutoscalerConditionApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerSpec"): + return &autoscalingv2beta1.HorizontalPodAutoscalerSpecApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerStatus"): + return &autoscalingv2beta1.HorizontalPodAutoscalerStatusApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("MetricSpec"): + return &autoscalingv2beta1.MetricSpecApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("MetricStatus"): + return &autoscalingv2beta1.MetricStatusApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ObjectMetricSource"): + return &autoscalingv2beta1.ObjectMetricSourceApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ObjectMetricStatus"): + return &autoscalingv2beta1.ObjectMetricStatusApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("PodsMetricSource"): + return &autoscalingv2beta1.PodsMetricSourceApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("PodsMetricStatus"): + return &autoscalingv2beta1.PodsMetricStatusApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ResourceMetricSource"): + return &autoscalingv2beta1.ResourceMetricSourceApplyConfiguration{} + case v2beta1.SchemeGroupVersion.WithKind("ResourceMetricStatus"): + return &autoscalingv2beta1.ResourceMetricStatusApplyConfiguration{} + + // Group=autoscaling, Version=v2beta2 + case v2beta2.SchemeGroupVersion.WithKind("ContainerResourceMetricSource"): + return &autoscalingv2beta2.ContainerResourceMetricSourceApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ContainerResourceMetricStatus"): + return &autoscalingv2beta2.ContainerResourceMetricStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("CrossVersionObjectReference"): + return &autoscalingv2beta2.CrossVersionObjectReferenceApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ExternalMetricSource"): + return &autoscalingv2beta2.ExternalMetricSourceApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ExternalMetricStatus"): + return &autoscalingv2beta2.ExternalMetricStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HorizontalPodAutoscaler"): + return &autoscalingv2beta2.HorizontalPodAutoscalerApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerBehavior"): + return &autoscalingv2beta2.HorizontalPodAutoscalerBehaviorApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerCondition"): + return &autoscalingv2beta2.HorizontalPodAutoscalerConditionApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerSpec"): + return &autoscalingv2beta2.HorizontalPodAutoscalerSpecApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HorizontalPodAutoscalerStatus"): + return &autoscalingv2beta2.HorizontalPodAutoscalerStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HPAScalingPolicy"): + return &autoscalingv2beta2.HPAScalingPolicyApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("HPAScalingRules"): + return &autoscalingv2beta2.HPAScalingRulesApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("MetricIdentifier"): + return &autoscalingv2beta2.MetricIdentifierApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("MetricSpec"): + return &autoscalingv2beta2.MetricSpecApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("MetricStatus"): + return &autoscalingv2beta2.MetricStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("MetricTarget"): + return &autoscalingv2beta2.MetricTargetApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("MetricValueStatus"): + return &autoscalingv2beta2.MetricValueStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ObjectMetricSource"): + return &autoscalingv2beta2.ObjectMetricSourceApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ObjectMetricStatus"): + return &autoscalingv2beta2.ObjectMetricStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("PodsMetricSource"): + return &autoscalingv2beta2.PodsMetricSourceApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("PodsMetricStatus"): + return &autoscalingv2beta2.PodsMetricStatusApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ResourceMetricSource"): + return &autoscalingv2beta2.ResourceMetricSourceApplyConfiguration{} + case v2beta2.SchemeGroupVersion.WithKind("ResourceMetricStatus"): + return &autoscalingv2beta2.ResourceMetricStatusApplyConfiguration{} + + // Group=batch, Version=v1 + case batchv1.SchemeGroupVersion.WithKind("CronJob"): + return &applyconfigurationsbatchv1.CronJobApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("CronJobSpec"): + return &applyconfigurationsbatchv1.CronJobSpecApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("CronJobStatus"): + return &applyconfigurationsbatchv1.CronJobStatusApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("Job"): + return &applyconfigurationsbatchv1.JobApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("JobCondition"): + return &applyconfigurationsbatchv1.JobConditionApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("JobSpec"): + return &applyconfigurationsbatchv1.JobSpecApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("JobStatus"): + return &applyconfigurationsbatchv1.JobStatusApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("JobTemplateSpec"): + return &applyconfigurationsbatchv1.JobTemplateSpecApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("PodFailurePolicy"): + return &applyconfigurationsbatchv1.PodFailurePolicyApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("PodFailurePolicyOnExitCodesRequirement"): + return &applyconfigurationsbatchv1.PodFailurePolicyOnExitCodesRequirementApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("PodFailurePolicyOnPodConditionsPattern"): + return &applyconfigurationsbatchv1.PodFailurePolicyOnPodConditionsPatternApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("PodFailurePolicyRule"): + return &applyconfigurationsbatchv1.PodFailurePolicyRuleApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("SuccessPolicy"): + return &applyconfigurationsbatchv1.SuccessPolicyApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("SuccessPolicyRule"): + return &applyconfigurationsbatchv1.SuccessPolicyRuleApplyConfiguration{} + case batchv1.SchemeGroupVersion.WithKind("UncountedTerminatedPods"): + return &applyconfigurationsbatchv1.UncountedTerminatedPodsApplyConfiguration{} + + // Group=batch, Version=v1beta1 + case batchv1beta1.SchemeGroupVersion.WithKind("CronJob"): + return &applyconfigurationsbatchv1beta1.CronJobApplyConfiguration{} + case batchv1beta1.SchemeGroupVersion.WithKind("CronJobSpec"): + return &applyconfigurationsbatchv1beta1.CronJobSpecApplyConfiguration{} + case batchv1beta1.SchemeGroupVersion.WithKind("CronJobStatus"): + return &applyconfigurationsbatchv1beta1.CronJobStatusApplyConfiguration{} + case batchv1beta1.SchemeGroupVersion.WithKind("JobTemplateSpec"): + return &applyconfigurationsbatchv1beta1.JobTemplateSpecApplyConfiguration{} + + // Group=certificates.k8s.io, Version=v1 + case certificatesv1.SchemeGroupVersion.WithKind("CertificateSigningRequest"): + return &applyconfigurationscertificatesv1.CertificateSigningRequestApplyConfiguration{} + case certificatesv1.SchemeGroupVersion.WithKind("CertificateSigningRequestCondition"): + return &applyconfigurationscertificatesv1.CertificateSigningRequestConditionApplyConfiguration{} + case certificatesv1.SchemeGroupVersion.WithKind("CertificateSigningRequestSpec"): + return &applyconfigurationscertificatesv1.CertificateSigningRequestSpecApplyConfiguration{} + case certificatesv1.SchemeGroupVersion.WithKind("CertificateSigningRequestStatus"): + return &applyconfigurationscertificatesv1.CertificateSigningRequestStatusApplyConfiguration{} + + // Group=certificates.k8s.io, Version=v1alpha1 + case certificatesv1alpha1.SchemeGroupVersion.WithKind("ClusterTrustBundle"): + return &applyconfigurationscertificatesv1alpha1.ClusterTrustBundleApplyConfiguration{} + case certificatesv1alpha1.SchemeGroupVersion.WithKind("ClusterTrustBundleSpec"): + return &applyconfigurationscertificatesv1alpha1.ClusterTrustBundleSpecApplyConfiguration{} + case certificatesv1alpha1.SchemeGroupVersion.WithKind("PodCertificateRequest"): + return &applyconfigurationscertificatesv1alpha1.PodCertificateRequestApplyConfiguration{} + case certificatesv1alpha1.SchemeGroupVersion.WithKind("PodCertificateRequestSpec"): + return &applyconfigurationscertificatesv1alpha1.PodCertificateRequestSpecApplyConfiguration{} + case certificatesv1alpha1.SchemeGroupVersion.WithKind("PodCertificateRequestStatus"): + return &applyconfigurationscertificatesv1alpha1.PodCertificateRequestStatusApplyConfiguration{} + + // Group=certificates.k8s.io, Version=v1beta1 + case certificatesv1beta1.SchemeGroupVersion.WithKind("CertificateSigningRequest"): + return &applyconfigurationscertificatesv1beta1.CertificateSigningRequestApplyConfiguration{} + case certificatesv1beta1.SchemeGroupVersion.WithKind("CertificateSigningRequestCondition"): + return &applyconfigurationscertificatesv1beta1.CertificateSigningRequestConditionApplyConfiguration{} + case certificatesv1beta1.SchemeGroupVersion.WithKind("CertificateSigningRequestSpec"): + return &applyconfigurationscertificatesv1beta1.CertificateSigningRequestSpecApplyConfiguration{} + case certificatesv1beta1.SchemeGroupVersion.WithKind("CertificateSigningRequestStatus"): + return &applyconfigurationscertificatesv1beta1.CertificateSigningRequestStatusApplyConfiguration{} + case certificatesv1beta1.SchemeGroupVersion.WithKind("ClusterTrustBundle"): + return &applyconfigurationscertificatesv1beta1.ClusterTrustBundleApplyConfiguration{} + case certificatesv1beta1.SchemeGroupVersion.WithKind("ClusterTrustBundleSpec"): + return &applyconfigurationscertificatesv1beta1.ClusterTrustBundleSpecApplyConfiguration{} + + // Group=coordination.k8s.io, Version=v1 + case coordinationv1.SchemeGroupVersion.WithKind("Lease"): + return &applyconfigurationscoordinationv1.LeaseApplyConfiguration{} + case coordinationv1.SchemeGroupVersion.WithKind("LeaseSpec"): + return &applyconfigurationscoordinationv1.LeaseSpecApplyConfiguration{} + + // Group=coordination.k8s.io, Version=v1alpha2 + case v1alpha2.SchemeGroupVersion.WithKind("LeaseCandidate"): + return &coordinationv1alpha2.LeaseCandidateApplyConfiguration{} + case v1alpha2.SchemeGroupVersion.WithKind("LeaseCandidateSpec"): + return &coordinationv1alpha2.LeaseCandidateSpecApplyConfiguration{} + + // Group=coordination.k8s.io, Version=v1beta1 + case coordinationv1beta1.SchemeGroupVersion.WithKind("Lease"): + return &applyconfigurationscoordinationv1beta1.LeaseApplyConfiguration{} + case coordinationv1beta1.SchemeGroupVersion.WithKind("LeaseCandidate"): + return &applyconfigurationscoordinationv1beta1.LeaseCandidateApplyConfiguration{} + case coordinationv1beta1.SchemeGroupVersion.WithKind("LeaseCandidateSpec"): + return &applyconfigurationscoordinationv1beta1.LeaseCandidateSpecApplyConfiguration{} + case coordinationv1beta1.SchemeGroupVersion.WithKind("LeaseSpec"): + return &applyconfigurationscoordinationv1beta1.LeaseSpecApplyConfiguration{} + + // Group=core, Version=v1 + case corev1.SchemeGroupVersion.WithKind("Affinity"): + return &applyconfigurationscorev1.AffinityApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("AppArmorProfile"): + return &applyconfigurationscorev1.AppArmorProfileApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("AttachedVolume"): + return &applyconfigurationscorev1.AttachedVolumeApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("AWSElasticBlockStoreVolumeSource"): + return &applyconfigurationscorev1.AWSElasticBlockStoreVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("AzureDiskVolumeSource"): + return &applyconfigurationscorev1.AzureDiskVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("AzureFilePersistentVolumeSource"): + return &applyconfigurationscorev1.AzureFilePersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("AzureFileVolumeSource"): + return &applyconfigurationscorev1.AzureFileVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Capabilities"): + return &applyconfigurationscorev1.CapabilitiesApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("CephFSPersistentVolumeSource"): + return &applyconfigurationscorev1.CephFSPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("CephFSVolumeSource"): + return &applyconfigurationscorev1.CephFSVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("CinderPersistentVolumeSource"): + return &applyconfigurationscorev1.CinderPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("CinderVolumeSource"): + return &applyconfigurationscorev1.CinderVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ClientIPConfig"): + return &applyconfigurationscorev1.ClientIPConfigApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ClusterTrustBundleProjection"): + return &applyconfigurationscorev1.ClusterTrustBundleProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ComponentCondition"): + return &applyconfigurationscorev1.ComponentConditionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ComponentStatus"): + return &applyconfigurationscorev1.ComponentStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ConfigMap"): + return &applyconfigurationscorev1.ConfigMapApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ConfigMapEnvSource"): + return &applyconfigurationscorev1.ConfigMapEnvSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ConfigMapKeySelector"): + return &applyconfigurationscorev1.ConfigMapKeySelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ConfigMapNodeConfigSource"): + return &applyconfigurationscorev1.ConfigMapNodeConfigSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ConfigMapProjection"): + return &applyconfigurationscorev1.ConfigMapProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ConfigMapVolumeSource"): + return &applyconfigurationscorev1.ConfigMapVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Container"): + return &applyconfigurationscorev1.ContainerApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerExtendedResourceRequest"): + return &applyconfigurationscorev1.ContainerExtendedResourceRequestApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerImage"): + return &applyconfigurationscorev1.ContainerImageApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerPort"): + return &applyconfigurationscorev1.ContainerPortApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerResizePolicy"): + return &applyconfigurationscorev1.ContainerResizePolicyApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerRestartRule"): + return &applyconfigurationscorev1.ContainerRestartRuleApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerRestartRuleOnExitCodes"): + return &applyconfigurationscorev1.ContainerRestartRuleOnExitCodesApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerState"): + return &applyconfigurationscorev1.ContainerStateApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerStateRunning"): + return &applyconfigurationscorev1.ContainerStateRunningApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerStateTerminated"): + return &applyconfigurationscorev1.ContainerStateTerminatedApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerStateWaiting"): + return &applyconfigurationscorev1.ContainerStateWaitingApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerStatus"): + return &applyconfigurationscorev1.ContainerStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ContainerUser"): + return &applyconfigurationscorev1.ContainerUserApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("CSIPersistentVolumeSource"): + return &applyconfigurationscorev1.CSIPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("CSIVolumeSource"): + return &applyconfigurationscorev1.CSIVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("DaemonEndpoint"): + return &applyconfigurationscorev1.DaemonEndpointApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("DownwardAPIProjection"): + return &applyconfigurationscorev1.DownwardAPIProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("DownwardAPIVolumeFile"): + return &applyconfigurationscorev1.DownwardAPIVolumeFileApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("DownwardAPIVolumeSource"): + return &applyconfigurationscorev1.DownwardAPIVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EmptyDirVolumeSource"): + return &applyconfigurationscorev1.EmptyDirVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EndpointAddress"): + return &applyconfigurationscorev1.EndpointAddressApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EndpointPort"): + return &applyconfigurationscorev1.EndpointPortApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Endpoints"): + return &applyconfigurationscorev1.EndpointsApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EndpointSubset"): + return &applyconfigurationscorev1.EndpointSubsetApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EnvFromSource"): + return &applyconfigurationscorev1.EnvFromSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EnvVar"): + return &applyconfigurationscorev1.EnvVarApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EnvVarSource"): + return &applyconfigurationscorev1.EnvVarSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EphemeralContainer"): + return &applyconfigurationscorev1.EphemeralContainerApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EphemeralContainerCommon"): + return &applyconfigurationscorev1.EphemeralContainerCommonApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EphemeralVolumeSource"): + return &applyconfigurationscorev1.EphemeralVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Event"): + return &applyconfigurationscorev1.EventApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EventSeries"): + return &applyconfigurationscorev1.EventSeriesApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("EventSource"): + return &applyconfigurationscorev1.EventSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ExecAction"): + return &applyconfigurationscorev1.ExecActionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("FCVolumeSource"): + return &applyconfigurationscorev1.FCVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("FileKeySelector"): + return &applyconfigurationscorev1.FileKeySelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("FlexPersistentVolumeSource"): + return &applyconfigurationscorev1.FlexPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("FlexVolumeSource"): + return &applyconfigurationscorev1.FlexVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("FlockerVolumeSource"): + return &applyconfigurationscorev1.FlockerVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("GCEPersistentDiskVolumeSource"): + return &applyconfigurationscorev1.GCEPersistentDiskVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("GitRepoVolumeSource"): + return &applyconfigurationscorev1.GitRepoVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("GlusterfsPersistentVolumeSource"): + return &applyconfigurationscorev1.GlusterfsPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("GlusterfsVolumeSource"): + return &applyconfigurationscorev1.GlusterfsVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("GRPCAction"): + return &applyconfigurationscorev1.GRPCActionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("HostAlias"): + return &applyconfigurationscorev1.HostAliasApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("HostIP"): + return &applyconfigurationscorev1.HostIPApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("HostPathVolumeSource"): + return &applyconfigurationscorev1.HostPathVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("HTTPGetAction"): + return &applyconfigurationscorev1.HTTPGetActionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("HTTPHeader"): + return &applyconfigurationscorev1.HTTPHeaderApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ImageVolumeSource"): + return &applyconfigurationscorev1.ImageVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ISCSIPersistentVolumeSource"): + return &applyconfigurationscorev1.ISCSIPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ISCSIVolumeSource"): + return &applyconfigurationscorev1.ISCSIVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("KeyToPath"): + return &applyconfigurationscorev1.KeyToPathApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Lifecycle"): + return &applyconfigurationscorev1.LifecycleApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LifecycleHandler"): + return &applyconfigurationscorev1.LifecycleHandlerApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LimitRange"): + return &applyconfigurationscorev1.LimitRangeApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LimitRangeItem"): + return &applyconfigurationscorev1.LimitRangeItemApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LimitRangeSpec"): + return &applyconfigurationscorev1.LimitRangeSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LinuxContainerUser"): + return &applyconfigurationscorev1.LinuxContainerUserApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LoadBalancerIngress"): + return &applyconfigurationscorev1.LoadBalancerIngressApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LoadBalancerStatus"): + return &applyconfigurationscorev1.LoadBalancerStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LocalObjectReference"): + return &applyconfigurationscorev1.LocalObjectReferenceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("LocalVolumeSource"): + return &applyconfigurationscorev1.LocalVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ModifyVolumeStatus"): + return &applyconfigurationscorev1.ModifyVolumeStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Namespace"): + return &applyconfigurationscorev1.NamespaceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NamespaceCondition"): + return &applyconfigurationscorev1.NamespaceConditionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NamespaceSpec"): + return &applyconfigurationscorev1.NamespaceSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NamespaceStatus"): + return &applyconfigurationscorev1.NamespaceStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NFSVolumeSource"): + return &applyconfigurationscorev1.NFSVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Node"): + return &applyconfigurationscorev1.NodeApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeAddress"): + return &applyconfigurationscorev1.NodeAddressApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeAffinity"): + return &applyconfigurationscorev1.NodeAffinityApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeCondition"): + return &applyconfigurationscorev1.NodeConditionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeConfigSource"): + return &applyconfigurationscorev1.NodeConfigSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeConfigStatus"): + return &applyconfigurationscorev1.NodeConfigStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeDaemonEndpoints"): + return &applyconfigurationscorev1.NodeDaemonEndpointsApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeFeatures"): + return &applyconfigurationscorev1.NodeFeaturesApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeRuntimeHandler"): + return &applyconfigurationscorev1.NodeRuntimeHandlerApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeRuntimeHandlerFeatures"): + return &applyconfigurationscorev1.NodeRuntimeHandlerFeaturesApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeSelector"): + return &applyconfigurationscorev1.NodeSelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeSelectorRequirement"): + return &applyconfigurationscorev1.NodeSelectorRequirementApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeSelectorTerm"): + return &applyconfigurationscorev1.NodeSelectorTermApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeSpec"): + return &applyconfigurationscorev1.NodeSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeStatus"): + return &applyconfigurationscorev1.NodeStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeSwapStatus"): + return &applyconfigurationscorev1.NodeSwapStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("NodeSystemInfo"): + return &applyconfigurationscorev1.NodeSystemInfoApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ObjectFieldSelector"): + return &applyconfigurationscorev1.ObjectFieldSelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ObjectReference"): + return &applyconfigurationscorev1.ObjectReferenceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolume"): + return &applyconfigurationscorev1.PersistentVolumeApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeClaim"): + return &applyconfigurationscorev1.PersistentVolumeClaimApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeClaimCondition"): + return &applyconfigurationscorev1.PersistentVolumeClaimConditionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeClaimSpec"): + return &applyconfigurationscorev1.PersistentVolumeClaimSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeClaimStatus"): + return &applyconfigurationscorev1.PersistentVolumeClaimStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeClaimTemplate"): + return &applyconfigurationscorev1.PersistentVolumeClaimTemplateApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeClaimVolumeSource"): + return &applyconfigurationscorev1.PersistentVolumeClaimVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeSource"): + return &applyconfigurationscorev1.PersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeSpec"): + return &applyconfigurationscorev1.PersistentVolumeSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PersistentVolumeStatus"): + return &applyconfigurationscorev1.PersistentVolumeStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PhotonPersistentDiskVolumeSource"): + return &applyconfigurationscorev1.PhotonPersistentDiskVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Pod"): + return &applyconfigurationscorev1.PodApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodAffinity"): + return &applyconfigurationscorev1.PodAffinityApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodAffinityTerm"): + return &applyconfigurationscorev1.PodAffinityTermApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodAntiAffinity"): + return &applyconfigurationscorev1.PodAntiAffinityApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodCertificateProjection"): + return &applyconfigurationscorev1.PodCertificateProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodCondition"): + return &applyconfigurationscorev1.PodConditionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodDNSConfig"): + return &applyconfigurationscorev1.PodDNSConfigApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodDNSConfigOption"): + return &applyconfigurationscorev1.PodDNSConfigOptionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodExtendedResourceClaimStatus"): + return &applyconfigurationscorev1.PodExtendedResourceClaimStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodIP"): + return &applyconfigurationscorev1.PodIPApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodOS"): + return &applyconfigurationscorev1.PodOSApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodReadinessGate"): + return &applyconfigurationscorev1.PodReadinessGateApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodResourceClaim"): + return &applyconfigurationscorev1.PodResourceClaimApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodResourceClaimStatus"): + return &applyconfigurationscorev1.PodResourceClaimStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodSchedulingGate"): + return &applyconfigurationscorev1.PodSchedulingGateApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodSecurityContext"): + return &applyconfigurationscorev1.PodSecurityContextApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodSpec"): + return &applyconfigurationscorev1.PodSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodStatus"): + return &applyconfigurationscorev1.PodStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodTemplate"): + return &applyconfigurationscorev1.PodTemplateApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PodTemplateSpec"): + return &applyconfigurationscorev1.PodTemplateSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PortStatus"): + return &applyconfigurationscorev1.PortStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PortworxVolumeSource"): + return &applyconfigurationscorev1.PortworxVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("PreferredSchedulingTerm"): + return &applyconfigurationscorev1.PreferredSchedulingTermApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Probe"): + return &applyconfigurationscorev1.ProbeApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ProbeHandler"): + return &applyconfigurationscorev1.ProbeHandlerApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ProjectedVolumeSource"): + return &applyconfigurationscorev1.ProjectedVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("QuobyteVolumeSource"): + return &applyconfigurationscorev1.QuobyteVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("RBDPersistentVolumeSource"): + return &applyconfigurationscorev1.RBDPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("RBDVolumeSource"): + return &applyconfigurationscorev1.RBDVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ReplicationController"): + return &applyconfigurationscorev1.ReplicationControllerApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ReplicationControllerCondition"): + return &applyconfigurationscorev1.ReplicationControllerConditionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ReplicationControllerSpec"): + return &applyconfigurationscorev1.ReplicationControllerSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ReplicationControllerStatus"): + return &applyconfigurationscorev1.ReplicationControllerStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceClaim"): + return &applyconfigurationscorev1.ResourceClaimApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceFieldSelector"): + return &applyconfigurationscorev1.ResourceFieldSelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceHealth"): + return &applyconfigurationscorev1.ResourceHealthApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceQuota"): + return &applyconfigurationscorev1.ResourceQuotaApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceQuotaSpec"): + return &applyconfigurationscorev1.ResourceQuotaSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceQuotaStatus"): + return &applyconfigurationscorev1.ResourceQuotaStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceRequirements"): + return &applyconfigurationscorev1.ResourceRequirementsApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ResourceStatus"): + return &applyconfigurationscorev1.ResourceStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ScaleIOPersistentVolumeSource"): + return &applyconfigurationscorev1.ScaleIOPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ScaleIOVolumeSource"): + return &applyconfigurationscorev1.ScaleIOVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ScopedResourceSelectorRequirement"): + return &applyconfigurationscorev1.ScopedResourceSelectorRequirementApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ScopeSelector"): + return &applyconfigurationscorev1.ScopeSelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SeccompProfile"): + return &applyconfigurationscorev1.SeccompProfileApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Secret"): + return &applyconfigurationscorev1.SecretApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SecretEnvSource"): + return &applyconfigurationscorev1.SecretEnvSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SecretKeySelector"): + return &applyconfigurationscorev1.SecretKeySelectorApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SecretProjection"): + return &applyconfigurationscorev1.SecretProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SecretReference"): + return &applyconfigurationscorev1.SecretReferenceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SecretVolumeSource"): + return &applyconfigurationscorev1.SecretVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SecurityContext"): + return &applyconfigurationscorev1.SecurityContextApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SELinuxOptions"): + return &applyconfigurationscorev1.SELinuxOptionsApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Service"): + return &applyconfigurationscorev1.ServiceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ServiceAccount"): + return &applyconfigurationscorev1.ServiceAccountApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ServiceAccountTokenProjection"): + return &applyconfigurationscorev1.ServiceAccountTokenProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ServicePort"): + return &applyconfigurationscorev1.ServicePortApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ServiceSpec"): + return &applyconfigurationscorev1.ServiceSpecApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("ServiceStatus"): + return &applyconfigurationscorev1.ServiceStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SessionAffinityConfig"): + return &applyconfigurationscorev1.SessionAffinityConfigApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("SleepAction"): + return &applyconfigurationscorev1.SleepActionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("StorageOSPersistentVolumeSource"): + return &applyconfigurationscorev1.StorageOSPersistentVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("StorageOSVolumeSource"): + return &applyconfigurationscorev1.StorageOSVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Sysctl"): + return &applyconfigurationscorev1.SysctlApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Taint"): + return &applyconfigurationscorev1.TaintApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("TCPSocketAction"): + return &applyconfigurationscorev1.TCPSocketActionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Toleration"): + return &applyconfigurationscorev1.TolerationApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("TopologySelectorLabelRequirement"): + return &applyconfigurationscorev1.TopologySelectorLabelRequirementApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("TopologySelectorTerm"): + return &applyconfigurationscorev1.TopologySelectorTermApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("TopologySpreadConstraint"): + return &applyconfigurationscorev1.TopologySpreadConstraintApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("TypedLocalObjectReference"): + return &applyconfigurationscorev1.TypedLocalObjectReferenceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("TypedObjectReference"): + return &applyconfigurationscorev1.TypedObjectReferenceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("Volume"): + return &applyconfigurationscorev1.VolumeApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeDevice"): + return &applyconfigurationscorev1.VolumeDeviceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeMount"): + return &applyconfigurationscorev1.VolumeMountApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeMountStatus"): + return &applyconfigurationscorev1.VolumeMountStatusApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeNodeAffinity"): + return &applyconfigurationscorev1.VolumeNodeAffinityApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeProjection"): + return &applyconfigurationscorev1.VolumeProjectionApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeResourceRequirements"): + return &applyconfigurationscorev1.VolumeResourceRequirementsApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VolumeSource"): + return &applyconfigurationscorev1.VolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("VsphereVirtualDiskVolumeSource"): + return &applyconfigurationscorev1.VsphereVirtualDiskVolumeSourceApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("WeightedPodAffinityTerm"): + return &applyconfigurationscorev1.WeightedPodAffinityTermApplyConfiguration{} + case corev1.SchemeGroupVersion.WithKind("WindowsSecurityContextOptions"): + return &applyconfigurationscorev1.WindowsSecurityContextOptionsApplyConfiguration{} + + // Group=discovery.k8s.io, Version=v1 + case discoveryv1.SchemeGroupVersion.WithKind("Endpoint"): + return &applyconfigurationsdiscoveryv1.EndpointApplyConfiguration{} + case discoveryv1.SchemeGroupVersion.WithKind("EndpointConditions"): + return &applyconfigurationsdiscoveryv1.EndpointConditionsApplyConfiguration{} + case discoveryv1.SchemeGroupVersion.WithKind("EndpointHints"): + return &applyconfigurationsdiscoveryv1.EndpointHintsApplyConfiguration{} + case discoveryv1.SchemeGroupVersion.WithKind("EndpointPort"): + return &applyconfigurationsdiscoveryv1.EndpointPortApplyConfiguration{} + case discoveryv1.SchemeGroupVersion.WithKind("EndpointSlice"): + return &applyconfigurationsdiscoveryv1.EndpointSliceApplyConfiguration{} + case discoveryv1.SchemeGroupVersion.WithKind("ForNode"): + return &applyconfigurationsdiscoveryv1.ForNodeApplyConfiguration{} + case discoveryv1.SchemeGroupVersion.WithKind("ForZone"): + return &applyconfigurationsdiscoveryv1.ForZoneApplyConfiguration{} + + // Group=discovery.k8s.io, Version=v1beta1 + case discoveryv1beta1.SchemeGroupVersion.WithKind("Endpoint"): + return &applyconfigurationsdiscoveryv1beta1.EndpointApplyConfiguration{} + case discoveryv1beta1.SchemeGroupVersion.WithKind("EndpointConditions"): + return &applyconfigurationsdiscoveryv1beta1.EndpointConditionsApplyConfiguration{} + case discoveryv1beta1.SchemeGroupVersion.WithKind("EndpointHints"): + return &applyconfigurationsdiscoveryv1beta1.EndpointHintsApplyConfiguration{} + case discoveryv1beta1.SchemeGroupVersion.WithKind("EndpointPort"): + return &applyconfigurationsdiscoveryv1beta1.EndpointPortApplyConfiguration{} + case discoveryv1beta1.SchemeGroupVersion.WithKind("EndpointSlice"): + return &applyconfigurationsdiscoveryv1beta1.EndpointSliceApplyConfiguration{} + case discoveryv1beta1.SchemeGroupVersion.WithKind("ForNode"): + return &applyconfigurationsdiscoveryv1beta1.ForNodeApplyConfiguration{} + case discoveryv1beta1.SchemeGroupVersion.WithKind("ForZone"): + return &applyconfigurationsdiscoveryv1beta1.ForZoneApplyConfiguration{} + + // Group=events.k8s.io, Version=v1 + case eventsv1.SchemeGroupVersion.WithKind("Event"): + return &applyconfigurationseventsv1.EventApplyConfiguration{} + case eventsv1.SchemeGroupVersion.WithKind("EventSeries"): + return &applyconfigurationseventsv1.EventSeriesApplyConfiguration{} + + // Group=events.k8s.io, Version=v1beta1 + case eventsv1beta1.SchemeGroupVersion.WithKind("Event"): + return &applyconfigurationseventsv1beta1.EventApplyConfiguration{} + case eventsv1beta1.SchemeGroupVersion.WithKind("EventSeries"): + return &applyconfigurationseventsv1beta1.EventSeriesApplyConfiguration{} + + // Group=extensions, Version=v1beta1 + case extensionsv1beta1.SchemeGroupVersion.WithKind("DaemonSet"): + return &applyconfigurationsextensionsv1beta1.DaemonSetApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DaemonSetCondition"): + return &applyconfigurationsextensionsv1beta1.DaemonSetConditionApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DaemonSetSpec"): + return &applyconfigurationsextensionsv1beta1.DaemonSetSpecApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DaemonSetStatus"): + return &applyconfigurationsextensionsv1beta1.DaemonSetStatusApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DaemonSetUpdateStrategy"): + return &applyconfigurationsextensionsv1beta1.DaemonSetUpdateStrategyApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("Deployment"): + return &applyconfigurationsextensionsv1beta1.DeploymentApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DeploymentCondition"): + return &applyconfigurationsextensionsv1beta1.DeploymentConditionApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DeploymentSpec"): + return &applyconfigurationsextensionsv1beta1.DeploymentSpecApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DeploymentStatus"): + return &applyconfigurationsextensionsv1beta1.DeploymentStatusApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("DeploymentStrategy"): + return &applyconfigurationsextensionsv1beta1.DeploymentStrategyApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("HTTPIngressPath"): + return &applyconfigurationsextensionsv1beta1.HTTPIngressPathApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("HTTPIngressRuleValue"): + return &applyconfigurationsextensionsv1beta1.HTTPIngressRuleValueApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("Ingress"): + return &applyconfigurationsextensionsv1beta1.IngressApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressBackend"): + return &applyconfigurationsextensionsv1beta1.IngressBackendApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressLoadBalancerIngress"): + return &applyconfigurationsextensionsv1beta1.IngressLoadBalancerIngressApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressLoadBalancerStatus"): + return &applyconfigurationsextensionsv1beta1.IngressLoadBalancerStatusApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressPortStatus"): + return &applyconfigurationsextensionsv1beta1.IngressPortStatusApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressRule"): + return &applyconfigurationsextensionsv1beta1.IngressRuleApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressRuleValue"): + return &applyconfigurationsextensionsv1beta1.IngressRuleValueApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressSpec"): + return &applyconfigurationsextensionsv1beta1.IngressSpecApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressStatus"): + return &applyconfigurationsextensionsv1beta1.IngressStatusApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IngressTLS"): + return &applyconfigurationsextensionsv1beta1.IngressTLSApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("IPBlock"): + return &applyconfigurationsextensionsv1beta1.IPBlockApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("NetworkPolicy"): + return &applyconfigurationsextensionsv1beta1.NetworkPolicyApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("NetworkPolicyEgressRule"): + return &applyconfigurationsextensionsv1beta1.NetworkPolicyEgressRuleApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("NetworkPolicyIngressRule"): + return &applyconfigurationsextensionsv1beta1.NetworkPolicyIngressRuleApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("NetworkPolicyPeer"): + return &applyconfigurationsextensionsv1beta1.NetworkPolicyPeerApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("NetworkPolicyPort"): + return &applyconfigurationsextensionsv1beta1.NetworkPolicyPortApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("NetworkPolicySpec"): + return &applyconfigurationsextensionsv1beta1.NetworkPolicySpecApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("ReplicaSet"): + return &applyconfigurationsextensionsv1beta1.ReplicaSetApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("ReplicaSetCondition"): + return &applyconfigurationsextensionsv1beta1.ReplicaSetConditionApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("ReplicaSetSpec"): + return &applyconfigurationsextensionsv1beta1.ReplicaSetSpecApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("ReplicaSetStatus"): + return &applyconfigurationsextensionsv1beta1.ReplicaSetStatusApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("RollbackConfig"): + return &applyconfigurationsextensionsv1beta1.RollbackConfigApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("RollingUpdateDaemonSet"): + return &applyconfigurationsextensionsv1beta1.RollingUpdateDaemonSetApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("RollingUpdateDeployment"): + return &applyconfigurationsextensionsv1beta1.RollingUpdateDeploymentApplyConfiguration{} + case extensionsv1beta1.SchemeGroupVersion.WithKind("Scale"): + return &applyconfigurationsextensionsv1beta1.ScaleApplyConfiguration{} + + // Group=flowcontrol.apiserver.k8s.io, Version=v1 + case flowcontrolv1.SchemeGroupVersion.WithKind("ExemptPriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1.ExemptPriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("FlowDistinguisherMethod"): + return &applyconfigurationsflowcontrolv1.FlowDistinguisherMethodApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("FlowSchema"): + return &applyconfigurationsflowcontrolv1.FlowSchemaApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("FlowSchemaCondition"): + return &applyconfigurationsflowcontrolv1.FlowSchemaConditionApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("FlowSchemaSpec"): + return &applyconfigurationsflowcontrolv1.FlowSchemaSpecApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("FlowSchemaStatus"): + return &applyconfigurationsflowcontrolv1.FlowSchemaStatusApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("GroupSubject"): + return &applyconfigurationsflowcontrolv1.GroupSubjectApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("LimitedPriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1.LimitedPriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("LimitResponse"): + return &applyconfigurationsflowcontrolv1.LimitResponseApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("NonResourcePolicyRule"): + return &applyconfigurationsflowcontrolv1.NonResourcePolicyRuleApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("PolicyRulesWithSubjects"): + return &applyconfigurationsflowcontrolv1.PolicyRulesWithSubjectsApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("PriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1.PriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationCondition"): + return &applyconfigurationsflowcontrolv1.PriorityLevelConfigurationConditionApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationReference"): + return &applyconfigurationsflowcontrolv1.PriorityLevelConfigurationReferenceApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationSpec"): + return &applyconfigurationsflowcontrolv1.PriorityLevelConfigurationSpecApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationStatus"): + return &applyconfigurationsflowcontrolv1.PriorityLevelConfigurationStatusApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("QueuingConfiguration"): + return &applyconfigurationsflowcontrolv1.QueuingConfigurationApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("ResourcePolicyRule"): + return &applyconfigurationsflowcontrolv1.ResourcePolicyRuleApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("ServiceAccountSubject"): + return &applyconfigurationsflowcontrolv1.ServiceAccountSubjectApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("Subject"): + return &applyconfigurationsflowcontrolv1.SubjectApplyConfiguration{} + case flowcontrolv1.SchemeGroupVersion.WithKind("UserSubject"): + return &applyconfigurationsflowcontrolv1.UserSubjectApplyConfiguration{} + + // Group=flowcontrol.apiserver.k8s.io, Version=v1beta1 + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("ExemptPriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1beta1.ExemptPriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("FlowDistinguisherMethod"): + return &applyconfigurationsflowcontrolv1beta1.FlowDistinguisherMethodApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("FlowSchema"): + return &applyconfigurationsflowcontrolv1beta1.FlowSchemaApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("FlowSchemaCondition"): + return &applyconfigurationsflowcontrolv1beta1.FlowSchemaConditionApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("FlowSchemaSpec"): + return &applyconfigurationsflowcontrolv1beta1.FlowSchemaSpecApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("FlowSchemaStatus"): + return &applyconfigurationsflowcontrolv1beta1.FlowSchemaStatusApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("GroupSubject"): + return &applyconfigurationsflowcontrolv1beta1.GroupSubjectApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("LimitedPriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1beta1.LimitedPriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("LimitResponse"): + return &applyconfigurationsflowcontrolv1beta1.LimitResponseApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("NonResourcePolicyRule"): + return &applyconfigurationsflowcontrolv1beta1.NonResourcePolicyRuleApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("PolicyRulesWithSubjects"): + return &applyconfigurationsflowcontrolv1beta1.PolicyRulesWithSubjectsApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("PriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1beta1.PriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationCondition"): + return &applyconfigurationsflowcontrolv1beta1.PriorityLevelConfigurationConditionApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationReference"): + return &applyconfigurationsflowcontrolv1beta1.PriorityLevelConfigurationReferenceApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationSpec"): + return &applyconfigurationsflowcontrolv1beta1.PriorityLevelConfigurationSpecApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("PriorityLevelConfigurationStatus"): + return &applyconfigurationsflowcontrolv1beta1.PriorityLevelConfigurationStatusApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("QueuingConfiguration"): + return &applyconfigurationsflowcontrolv1beta1.QueuingConfigurationApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("ResourcePolicyRule"): + return &applyconfigurationsflowcontrolv1beta1.ResourcePolicyRuleApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("ServiceAccountSubject"): + return &applyconfigurationsflowcontrolv1beta1.ServiceAccountSubjectApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("Subject"): + return &applyconfigurationsflowcontrolv1beta1.SubjectApplyConfiguration{} + case flowcontrolv1beta1.SchemeGroupVersion.WithKind("UserSubject"): + return &applyconfigurationsflowcontrolv1beta1.UserSubjectApplyConfiguration{} + + // Group=flowcontrol.apiserver.k8s.io, Version=v1beta2 + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("ExemptPriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1beta2.ExemptPriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("FlowDistinguisherMethod"): + return &applyconfigurationsflowcontrolv1beta2.FlowDistinguisherMethodApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("FlowSchema"): + return &applyconfigurationsflowcontrolv1beta2.FlowSchemaApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("FlowSchemaCondition"): + return &applyconfigurationsflowcontrolv1beta2.FlowSchemaConditionApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("FlowSchemaSpec"): + return &applyconfigurationsflowcontrolv1beta2.FlowSchemaSpecApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("FlowSchemaStatus"): + return &applyconfigurationsflowcontrolv1beta2.FlowSchemaStatusApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("GroupSubject"): + return &applyconfigurationsflowcontrolv1beta2.GroupSubjectApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("LimitedPriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1beta2.LimitedPriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("LimitResponse"): + return &applyconfigurationsflowcontrolv1beta2.LimitResponseApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("NonResourcePolicyRule"): + return &applyconfigurationsflowcontrolv1beta2.NonResourcePolicyRuleApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("PolicyRulesWithSubjects"): + return &applyconfigurationsflowcontrolv1beta2.PolicyRulesWithSubjectsApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("PriorityLevelConfiguration"): + return &applyconfigurationsflowcontrolv1beta2.PriorityLevelConfigurationApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("PriorityLevelConfigurationCondition"): + return &applyconfigurationsflowcontrolv1beta2.PriorityLevelConfigurationConditionApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("PriorityLevelConfigurationReference"): + return &applyconfigurationsflowcontrolv1beta2.PriorityLevelConfigurationReferenceApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("PriorityLevelConfigurationSpec"): + return &applyconfigurationsflowcontrolv1beta2.PriorityLevelConfigurationSpecApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("PriorityLevelConfigurationStatus"): + return &applyconfigurationsflowcontrolv1beta2.PriorityLevelConfigurationStatusApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("QueuingConfiguration"): + return &applyconfigurationsflowcontrolv1beta2.QueuingConfigurationApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("ResourcePolicyRule"): + return &applyconfigurationsflowcontrolv1beta2.ResourcePolicyRuleApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("ServiceAccountSubject"): + return &applyconfigurationsflowcontrolv1beta2.ServiceAccountSubjectApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("Subject"): + return &applyconfigurationsflowcontrolv1beta2.SubjectApplyConfiguration{} + case flowcontrolv1beta2.SchemeGroupVersion.WithKind("UserSubject"): + return &applyconfigurationsflowcontrolv1beta2.UserSubjectApplyConfiguration{} + + // Group=flowcontrol.apiserver.k8s.io, Version=v1beta3 + case v1beta3.SchemeGroupVersion.WithKind("ExemptPriorityLevelConfiguration"): + return &flowcontrolv1beta3.ExemptPriorityLevelConfigurationApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("FlowDistinguisherMethod"): + return &flowcontrolv1beta3.FlowDistinguisherMethodApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("FlowSchema"): + return &flowcontrolv1beta3.FlowSchemaApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("FlowSchemaCondition"): + return &flowcontrolv1beta3.FlowSchemaConditionApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("FlowSchemaSpec"): + return &flowcontrolv1beta3.FlowSchemaSpecApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("FlowSchemaStatus"): + return &flowcontrolv1beta3.FlowSchemaStatusApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("GroupSubject"): + return &flowcontrolv1beta3.GroupSubjectApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("LimitedPriorityLevelConfiguration"): + return &flowcontrolv1beta3.LimitedPriorityLevelConfigurationApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("LimitResponse"): + return &flowcontrolv1beta3.LimitResponseApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("NonResourcePolicyRule"): + return &flowcontrolv1beta3.NonResourcePolicyRuleApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("PolicyRulesWithSubjects"): + return &flowcontrolv1beta3.PolicyRulesWithSubjectsApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("PriorityLevelConfiguration"): + return &flowcontrolv1beta3.PriorityLevelConfigurationApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("PriorityLevelConfigurationCondition"): + return &flowcontrolv1beta3.PriorityLevelConfigurationConditionApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("PriorityLevelConfigurationReference"): + return &flowcontrolv1beta3.PriorityLevelConfigurationReferenceApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("PriorityLevelConfigurationSpec"): + return &flowcontrolv1beta3.PriorityLevelConfigurationSpecApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("PriorityLevelConfigurationStatus"): + return &flowcontrolv1beta3.PriorityLevelConfigurationStatusApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("QueuingConfiguration"): + return &flowcontrolv1beta3.QueuingConfigurationApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("ResourcePolicyRule"): + return &flowcontrolv1beta3.ResourcePolicyRuleApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("ServiceAccountSubject"): + return &flowcontrolv1beta3.ServiceAccountSubjectApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("Subject"): + return &flowcontrolv1beta3.SubjectApplyConfiguration{} + case v1beta3.SchemeGroupVersion.WithKind("UserSubject"): + return &flowcontrolv1beta3.UserSubjectApplyConfiguration{} + + // Group=imagepolicy.k8s.io, Version=v1alpha1 + case imagepolicyv1alpha1.SchemeGroupVersion.WithKind("ImageReview"): + return &applyconfigurationsimagepolicyv1alpha1.ImageReviewApplyConfiguration{} + case imagepolicyv1alpha1.SchemeGroupVersion.WithKind("ImageReviewContainerSpec"): + return &applyconfigurationsimagepolicyv1alpha1.ImageReviewContainerSpecApplyConfiguration{} + case imagepolicyv1alpha1.SchemeGroupVersion.WithKind("ImageReviewSpec"): + return &applyconfigurationsimagepolicyv1alpha1.ImageReviewSpecApplyConfiguration{} + case imagepolicyv1alpha1.SchemeGroupVersion.WithKind("ImageReviewStatus"): + return &applyconfigurationsimagepolicyv1alpha1.ImageReviewStatusApplyConfiguration{} + + // Group=internal.apiserver.k8s.io, Version=v1alpha1 + case apiserverinternalv1alpha1.SchemeGroupVersion.WithKind("ServerStorageVersion"): + return &applyconfigurationsapiserverinternalv1alpha1.ServerStorageVersionApplyConfiguration{} + case apiserverinternalv1alpha1.SchemeGroupVersion.WithKind("StorageVersion"): + return &applyconfigurationsapiserverinternalv1alpha1.StorageVersionApplyConfiguration{} + case apiserverinternalv1alpha1.SchemeGroupVersion.WithKind("StorageVersionCondition"): + return &applyconfigurationsapiserverinternalv1alpha1.StorageVersionConditionApplyConfiguration{} + case apiserverinternalv1alpha1.SchemeGroupVersion.WithKind("StorageVersionStatus"): + return &applyconfigurationsapiserverinternalv1alpha1.StorageVersionStatusApplyConfiguration{} + + // Group=meta.k8s.io, Version=v1 + case metav1.SchemeGroupVersion.WithKind("Condition"): + return &applyconfigurationsmetav1.ConditionApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("DeleteOptions"): + return &applyconfigurationsmetav1.DeleteOptionsApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("LabelSelector"): + return &applyconfigurationsmetav1.LabelSelectorApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("LabelSelectorRequirement"): + return &applyconfigurationsmetav1.LabelSelectorRequirementApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("ManagedFieldsEntry"): + return &applyconfigurationsmetav1.ManagedFieldsEntryApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("ObjectMeta"): + return &applyconfigurationsmetav1.ObjectMetaApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("OwnerReference"): + return &applyconfigurationsmetav1.OwnerReferenceApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("Preconditions"): + return &applyconfigurationsmetav1.PreconditionsApplyConfiguration{} + case metav1.SchemeGroupVersion.WithKind("TypeMeta"): + return &applyconfigurationsmetav1.TypeMetaApplyConfiguration{} + + // Group=networking.k8s.io, Version=v1 + case networkingv1.SchemeGroupVersion.WithKind("HTTPIngressPath"): + return &applyconfigurationsnetworkingv1.HTTPIngressPathApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("HTTPIngressRuleValue"): + return &applyconfigurationsnetworkingv1.HTTPIngressRuleValueApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("Ingress"): + return &applyconfigurationsnetworkingv1.IngressApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressBackend"): + return &applyconfigurationsnetworkingv1.IngressBackendApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressClass"): + return &applyconfigurationsnetworkingv1.IngressClassApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressClassParametersReference"): + return &applyconfigurationsnetworkingv1.IngressClassParametersReferenceApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressClassSpec"): + return &applyconfigurationsnetworkingv1.IngressClassSpecApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressLoadBalancerIngress"): + return &applyconfigurationsnetworkingv1.IngressLoadBalancerIngressApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressLoadBalancerStatus"): + return &applyconfigurationsnetworkingv1.IngressLoadBalancerStatusApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressPortStatus"): + return &applyconfigurationsnetworkingv1.IngressPortStatusApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressRule"): + return &applyconfigurationsnetworkingv1.IngressRuleApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressRuleValue"): + return &applyconfigurationsnetworkingv1.IngressRuleValueApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressServiceBackend"): + return &applyconfigurationsnetworkingv1.IngressServiceBackendApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressSpec"): + return &applyconfigurationsnetworkingv1.IngressSpecApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressStatus"): + return &applyconfigurationsnetworkingv1.IngressStatusApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IngressTLS"): + return &applyconfigurationsnetworkingv1.IngressTLSApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IPAddress"): + return &applyconfigurationsnetworkingv1.IPAddressApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IPAddressSpec"): + return &applyconfigurationsnetworkingv1.IPAddressSpecApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("IPBlock"): + return &applyconfigurationsnetworkingv1.IPBlockApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("NetworkPolicy"): + return &applyconfigurationsnetworkingv1.NetworkPolicyApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("NetworkPolicyEgressRule"): + return &applyconfigurationsnetworkingv1.NetworkPolicyEgressRuleApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("NetworkPolicyIngressRule"): + return &applyconfigurationsnetworkingv1.NetworkPolicyIngressRuleApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("NetworkPolicyPeer"): + return &applyconfigurationsnetworkingv1.NetworkPolicyPeerApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("NetworkPolicyPort"): + return &applyconfigurationsnetworkingv1.NetworkPolicyPortApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("NetworkPolicySpec"): + return &applyconfigurationsnetworkingv1.NetworkPolicySpecApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("ParentReference"): + return &applyconfigurationsnetworkingv1.ParentReferenceApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("ServiceBackendPort"): + return &applyconfigurationsnetworkingv1.ServiceBackendPortApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("ServiceCIDR"): + return &applyconfigurationsnetworkingv1.ServiceCIDRApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("ServiceCIDRSpec"): + return &applyconfigurationsnetworkingv1.ServiceCIDRSpecApplyConfiguration{} + case networkingv1.SchemeGroupVersion.WithKind("ServiceCIDRStatus"): + return &applyconfigurationsnetworkingv1.ServiceCIDRStatusApplyConfiguration{} + + // Group=networking.k8s.io, Version=v1beta1 + case networkingv1beta1.SchemeGroupVersion.WithKind("HTTPIngressPath"): + return &applyconfigurationsnetworkingv1beta1.HTTPIngressPathApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("HTTPIngressRuleValue"): + return &applyconfigurationsnetworkingv1beta1.HTTPIngressRuleValueApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("Ingress"): + return &applyconfigurationsnetworkingv1beta1.IngressApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressBackend"): + return &applyconfigurationsnetworkingv1beta1.IngressBackendApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressClass"): + return &applyconfigurationsnetworkingv1beta1.IngressClassApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressClassParametersReference"): + return &applyconfigurationsnetworkingv1beta1.IngressClassParametersReferenceApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressClassSpec"): + return &applyconfigurationsnetworkingv1beta1.IngressClassSpecApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressLoadBalancerIngress"): + return &applyconfigurationsnetworkingv1beta1.IngressLoadBalancerIngressApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressLoadBalancerStatus"): + return &applyconfigurationsnetworkingv1beta1.IngressLoadBalancerStatusApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressPortStatus"): + return &applyconfigurationsnetworkingv1beta1.IngressPortStatusApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressRule"): + return &applyconfigurationsnetworkingv1beta1.IngressRuleApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressRuleValue"): + return &applyconfigurationsnetworkingv1beta1.IngressRuleValueApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressSpec"): + return &applyconfigurationsnetworkingv1beta1.IngressSpecApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressStatus"): + return &applyconfigurationsnetworkingv1beta1.IngressStatusApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IngressTLS"): + return &applyconfigurationsnetworkingv1beta1.IngressTLSApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IPAddress"): + return &applyconfigurationsnetworkingv1beta1.IPAddressApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("IPAddressSpec"): + return &applyconfigurationsnetworkingv1beta1.IPAddressSpecApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("ParentReference"): + return &applyconfigurationsnetworkingv1beta1.ParentReferenceApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("ServiceCIDR"): + return &applyconfigurationsnetworkingv1beta1.ServiceCIDRApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("ServiceCIDRSpec"): + return &applyconfigurationsnetworkingv1beta1.ServiceCIDRSpecApplyConfiguration{} + case networkingv1beta1.SchemeGroupVersion.WithKind("ServiceCIDRStatus"): + return &applyconfigurationsnetworkingv1beta1.ServiceCIDRStatusApplyConfiguration{} + + // Group=node.k8s.io, Version=v1 + case nodev1.SchemeGroupVersion.WithKind("Overhead"): + return &applyconfigurationsnodev1.OverheadApplyConfiguration{} + case nodev1.SchemeGroupVersion.WithKind("RuntimeClass"): + return &applyconfigurationsnodev1.RuntimeClassApplyConfiguration{} + case nodev1.SchemeGroupVersion.WithKind("Scheduling"): + return &applyconfigurationsnodev1.SchedulingApplyConfiguration{} + + // Group=node.k8s.io, Version=v1alpha1 + case nodev1alpha1.SchemeGroupVersion.WithKind("Overhead"): + return &applyconfigurationsnodev1alpha1.OverheadApplyConfiguration{} + case nodev1alpha1.SchemeGroupVersion.WithKind("RuntimeClass"): + return &applyconfigurationsnodev1alpha1.RuntimeClassApplyConfiguration{} + case nodev1alpha1.SchemeGroupVersion.WithKind("RuntimeClassSpec"): + return &applyconfigurationsnodev1alpha1.RuntimeClassSpecApplyConfiguration{} + case nodev1alpha1.SchemeGroupVersion.WithKind("Scheduling"): + return &applyconfigurationsnodev1alpha1.SchedulingApplyConfiguration{} + + // Group=node.k8s.io, Version=v1beta1 + case nodev1beta1.SchemeGroupVersion.WithKind("Overhead"): + return &applyconfigurationsnodev1beta1.OverheadApplyConfiguration{} + case nodev1beta1.SchemeGroupVersion.WithKind("RuntimeClass"): + return &applyconfigurationsnodev1beta1.RuntimeClassApplyConfiguration{} + case nodev1beta1.SchemeGroupVersion.WithKind("Scheduling"): + return &applyconfigurationsnodev1beta1.SchedulingApplyConfiguration{} + + // Group=policy, Version=v1 + case policyv1.SchemeGroupVersion.WithKind("Eviction"): + return &applyconfigurationspolicyv1.EvictionApplyConfiguration{} + case policyv1.SchemeGroupVersion.WithKind("PodDisruptionBudget"): + return &applyconfigurationspolicyv1.PodDisruptionBudgetApplyConfiguration{} + case policyv1.SchemeGroupVersion.WithKind("PodDisruptionBudgetSpec"): + return &applyconfigurationspolicyv1.PodDisruptionBudgetSpecApplyConfiguration{} + case policyv1.SchemeGroupVersion.WithKind("PodDisruptionBudgetStatus"): + return &applyconfigurationspolicyv1.PodDisruptionBudgetStatusApplyConfiguration{} + + // Group=policy, Version=v1beta1 + case policyv1beta1.SchemeGroupVersion.WithKind("Eviction"): + return &applyconfigurationspolicyv1beta1.EvictionApplyConfiguration{} + case policyv1beta1.SchemeGroupVersion.WithKind("PodDisruptionBudget"): + return &applyconfigurationspolicyv1beta1.PodDisruptionBudgetApplyConfiguration{} + case policyv1beta1.SchemeGroupVersion.WithKind("PodDisruptionBudgetSpec"): + return &applyconfigurationspolicyv1beta1.PodDisruptionBudgetSpecApplyConfiguration{} + case policyv1beta1.SchemeGroupVersion.WithKind("PodDisruptionBudgetStatus"): + return &applyconfigurationspolicyv1beta1.PodDisruptionBudgetStatusApplyConfiguration{} + + // Group=rbac.authorization.k8s.io, Version=v1 + case rbacv1.SchemeGroupVersion.WithKind("AggregationRule"): + return &applyconfigurationsrbacv1.AggregationRuleApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("ClusterRole"): + return &applyconfigurationsrbacv1.ClusterRoleApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("ClusterRoleBinding"): + return &applyconfigurationsrbacv1.ClusterRoleBindingApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("PolicyRule"): + return &applyconfigurationsrbacv1.PolicyRuleApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("Role"): + return &applyconfigurationsrbacv1.RoleApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("RoleBinding"): + return &applyconfigurationsrbacv1.RoleBindingApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("RoleRef"): + return &applyconfigurationsrbacv1.RoleRefApplyConfiguration{} + case rbacv1.SchemeGroupVersion.WithKind("Subject"): + return &applyconfigurationsrbacv1.SubjectApplyConfiguration{} + + // Group=rbac.authorization.k8s.io, Version=v1alpha1 + case rbacv1alpha1.SchemeGroupVersion.WithKind("AggregationRule"): + return &applyconfigurationsrbacv1alpha1.AggregationRuleApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("ClusterRole"): + return &applyconfigurationsrbacv1alpha1.ClusterRoleApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("ClusterRoleBinding"): + return &applyconfigurationsrbacv1alpha1.ClusterRoleBindingApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("PolicyRule"): + return &applyconfigurationsrbacv1alpha1.PolicyRuleApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("Role"): + return &applyconfigurationsrbacv1alpha1.RoleApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("RoleBinding"): + return &applyconfigurationsrbacv1alpha1.RoleBindingApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("RoleRef"): + return &applyconfigurationsrbacv1alpha1.RoleRefApplyConfiguration{} + case rbacv1alpha1.SchemeGroupVersion.WithKind("Subject"): + return &applyconfigurationsrbacv1alpha1.SubjectApplyConfiguration{} + + // Group=rbac.authorization.k8s.io, Version=v1beta1 + case rbacv1beta1.SchemeGroupVersion.WithKind("AggregationRule"): + return &applyconfigurationsrbacv1beta1.AggregationRuleApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("ClusterRole"): + return &applyconfigurationsrbacv1beta1.ClusterRoleApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("ClusterRoleBinding"): + return &applyconfigurationsrbacv1beta1.ClusterRoleBindingApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("PolicyRule"): + return &applyconfigurationsrbacv1beta1.PolicyRuleApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("Role"): + return &applyconfigurationsrbacv1beta1.RoleApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("RoleBinding"): + return &applyconfigurationsrbacv1beta1.RoleBindingApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("RoleRef"): + return &applyconfigurationsrbacv1beta1.RoleRefApplyConfiguration{} + case rbacv1beta1.SchemeGroupVersion.WithKind("Subject"): + return &applyconfigurationsrbacv1beta1.SubjectApplyConfiguration{} + + // Group=resource.k8s.io, Version=v1 + case resourcev1.SchemeGroupVersion.WithKind("AllocatedDeviceStatus"): + return &applyconfigurationsresourcev1.AllocatedDeviceStatusApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("AllocationResult"): + return &applyconfigurationsresourcev1.AllocationResultApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("CapacityRequestPolicy"): + return &applyconfigurationsresourcev1.CapacityRequestPolicyApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("CapacityRequestPolicyRange"): + return &applyconfigurationsresourcev1.CapacityRequestPolicyRangeApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("CapacityRequirements"): + return &applyconfigurationsresourcev1.CapacityRequirementsApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("CELDeviceSelector"): + return &applyconfigurationsresourcev1.CELDeviceSelectorApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("Counter"): + return &applyconfigurationsresourcev1.CounterApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("CounterSet"): + return &applyconfigurationsresourcev1.CounterSetApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("Device"): + return &applyconfigurationsresourcev1.DeviceApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceAllocationConfiguration"): + return &applyconfigurationsresourcev1.DeviceAllocationConfigurationApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceAllocationResult"): + return &applyconfigurationsresourcev1.DeviceAllocationResultApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceAttribute"): + return &applyconfigurationsresourcev1.DeviceAttributeApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceCapacity"): + return &applyconfigurationsresourcev1.DeviceCapacityApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceClaim"): + return &applyconfigurationsresourcev1.DeviceClaimApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceClaimConfiguration"): + return &applyconfigurationsresourcev1.DeviceClaimConfigurationApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceClass"): + return &applyconfigurationsresourcev1.DeviceClassApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceClassConfiguration"): + return &applyconfigurationsresourcev1.DeviceClassConfigurationApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceClassSpec"): + return &applyconfigurationsresourcev1.DeviceClassSpecApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceConfiguration"): + return &applyconfigurationsresourcev1.DeviceConfigurationApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceConstraint"): + return &applyconfigurationsresourcev1.DeviceConstraintApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceCounterConsumption"): + return &applyconfigurationsresourcev1.DeviceCounterConsumptionApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceRequest"): + return &applyconfigurationsresourcev1.DeviceRequestApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceRequestAllocationResult"): + return &applyconfigurationsresourcev1.DeviceRequestAllocationResultApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceSelector"): + return &applyconfigurationsresourcev1.DeviceSelectorApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceSubRequest"): + return &applyconfigurationsresourcev1.DeviceSubRequestApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceTaint"): + return &applyconfigurationsresourcev1.DeviceTaintApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("DeviceToleration"): + return &applyconfigurationsresourcev1.DeviceTolerationApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ExactDeviceRequest"): + return &applyconfigurationsresourcev1.ExactDeviceRequestApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("NetworkDeviceData"): + return &applyconfigurationsresourcev1.NetworkDeviceDataApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("OpaqueDeviceConfiguration"): + return &applyconfigurationsresourcev1.OpaqueDeviceConfigurationApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceClaim"): + return &applyconfigurationsresourcev1.ResourceClaimApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceClaimConsumerReference"): + return &applyconfigurationsresourcev1.ResourceClaimConsumerReferenceApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceClaimSpec"): + return &applyconfigurationsresourcev1.ResourceClaimSpecApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceClaimStatus"): + return &applyconfigurationsresourcev1.ResourceClaimStatusApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceClaimTemplate"): + return &applyconfigurationsresourcev1.ResourceClaimTemplateApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceClaimTemplateSpec"): + return &applyconfigurationsresourcev1.ResourceClaimTemplateSpecApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourcePool"): + return &applyconfigurationsresourcev1.ResourcePoolApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceSlice"): + return &applyconfigurationsresourcev1.ResourceSliceApplyConfiguration{} + case resourcev1.SchemeGroupVersion.WithKind("ResourceSliceSpec"): + return &applyconfigurationsresourcev1.ResourceSliceSpecApplyConfiguration{} + + // Group=resource.k8s.io, Version=v1alpha3 + case v1alpha3.SchemeGroupVersion.WithKind("CELDeviceSelector"): + return &resourcev1alpha3.CELDeviceSelectorApplyConfiguration{} + case v1alpha3.SchemeGroupVersion.WithKind("DeviceSelector"): + return &resourcev1alpha3.DeviceSelectorApplyConfiguration{} + case v1alpha3.SchemeGroupVersion.WithKind("DeviceTaint"): + return &resourcev1alpha3.DeviceTaintApplyConfiguration{} + case v1alpha3.SchemeGroupVersion.WithKind("DeviceTaintRule"): + return &resourcev1alpha3.DeviceTaintRuleApplyConfiguration{} + case v1alpha3.SchemeGroupVersion.WithKind("DeviceTaintRuleSpec"): + return &resourcev1alpha3.DeviceTaintRuleSpecApplyConfiguration{} + case v1alpha3.SchemeGroupVersion.WithKind("DeviceTaintSelector"): + return &resourcev1alpha3.DeviceTaintSelectorApplyConfiguration{} + + // Group=resource.k8s.io, Version=v1beta1 + case resourcev1beta1.SchemeGroupVersion.WithKind("AllocatedDeviceStatus"): + return &applyconfigurationsresourcev1beta1.AllocatedDeviceStatusApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("AllocationResult"): + return &applyconfigurationsresourcev1beta1.AllocationResultApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("BasicDevice"): + return &applyconfigurationsresourcev1beta1.BasicDeviceApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("CapacityRequestPolicy"): + return &applyconfigurationsresourcev1beta1.CapacityRequestPolicyApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("CapacityRequestPolicyRange"): + return &applyconfigurationsresourcev1beta1.CapacityRequestPolicyRangeApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("CapacityRequirements"): + return &applyconfigurationsresourcev1beta1.CapacityRequirementsApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("CELDeviceSelector"): + return &applyconfigurationsresourcev1beta1.CELDeviceSelectorApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("Counter"): + return &applyconfigurationsresourcev1beta1.CounterApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("CounterSet"): + return &applyconfigurationsresourcev1beta1.CounterSetApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("Device"): + return &applyconfigurationsresourcev1beta1.DeviceApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceAllocationConfiguration"): + return &applyconfigurationsresourcev1beta1.DeviceAllocationConfigurationApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceAllocationResult"): + return &applyconfigurationsresourcev1beta1.DeviceAllocationResultApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceAttribute"): + return &applyconfigurationsresourcev1beta1.DeviceAttributeApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceCapacity"): + return &applyconfigurationsresourcev1beta1.DeviceCapacityApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceClaim"): + return &applyconfigurationsresourcev1beta1.DeviceClaimApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceClaimConfiguration"): + return &applyconfigurationsresourcev1beta1.DeviceClaimConfigurationApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceClass"): + return &applyconfigurationsresourcev1beta1.DeviceClassApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceClassConfiguration"): + return &applyconfigurationsresourcev1beta1.DeviceClassConfigurationApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceClassSpec"): + return &applyconfigurationsresourcev1beta1.DeviceClassSpecApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceConfiguration"): + return &applyconfigurationsresourcev1beta1.DeviceConfigurationApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceConstraint"): + return &applyconfigurationsresourcev1beta1.DeviceConstraintApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceCounterConsumption"): + return &applyconfigurationsresourcev1beta1.DeviceCounterConsumptionApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceRequest"): + return &applyconfigurationsresourcev1beta1.DeviceRequestApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceRequestAllocationResult"): + return &applyconfigurationsresourcev1beta1.DeviceRequestAllocationResultApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceSelector"): + return &applyconfigurationsresourcev1beta1.DeviceSelectorApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceSubRequest"): + return &applyconfigurationsresourcev1beta1.DeviceSubRequestApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceTaint"): + return &applyconfigurationsresourcev1beta1.DeviceTaintApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("DeviceToleration"): + return &applyconfigurationsresourcev1beta1.DeviceTolerationApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("NetworkDeviceData"): + return &applyconfigurationsresourcev1beta1.NetworkDeviceDataApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("OpaqueDeviceConfiguration"): + return &applyconfigurationsresourcev1beta1.OpaqueDeviceConfigurationApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceClaim"): + return &applyconfigurationsresourcev1beta1.ResourceClaimApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceClaimConsumerReference"): + return &applyconfigurationsresourcev1beta1.ResourceClaimConsumerReferenceApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceClaimSpec"): + return &applyconfigurationsresourcev1beta1.ResourceClaimSpecApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceClaimStatus"): + return &applyconfigurationsresourcev1beta1.ResourceClaimStatusApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceClaimTemplate"): + return &applyconfigurationsresourcev1beta1.ResourceClaimTemplateApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceClaimTemplateSpec"): + return &applyconfigurationsresourcev1beta1.ResourceClaimTemplateSpecApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourcePool"): + return &applyconfigurationsresourcev1beta1.ResourcePoolApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceSlice"): + return &applyconfigurationsresourcev1beta1.ResourceSliceApplyConfiguration{} + case resourcev1beta1.SchemeGroupVersion.WithKind("ResourceSliceSpec"): + return &applyconfigurationsresourcev1beta1.ResourceSliceSpecApplyConfiguration{} + + // Group=resource.k8s.io, Version=v1beta2 + case resourcev1beta2.SchemeGroupVersion.WithKind("AllocatedDeviceStatus"): + return &applyconfigurationsresourcev1beta2.AllocatedDeviceStatusApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("AllocationResult"): + return &applyconfigurationsresourcev1beta2.AllocationResultApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("CapacityRequestPolicy"): + return &applyconfigurationsresourcev1beta2.CapacityRequestPolicyApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("CapacityRequestPolicyRange"): + return &applyconfigurationsresourcev1beta2.CapacityRequestPolicyRangeApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("CapacityRequirements"): + return &applyconfigurationsresourcev1beta2.CapacityRequirementsApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("CELDeviceSelector"): + return &applyconfigurationsresourcev1beta2.CELDeviceSelectorApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("Counter"): + return &applyconfigurationsresourcev1beta2.CounterApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("CounterSet"): + return &applyconfigurationsresourcev1beta2.CounterSetApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("Device"): + return &applyconfigurationsresourcev1beta2.DeviceApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceAllocationConfiguration"): + return &applyconfigurationsresourcev1beta2.DeviceAllocationConfigurationApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceAllocationResult"): + return &applyconfigurationsresourcev1beta2.DeviceAllocationResultApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceAttribute"): + return &applyconfigurationsresourcev1beta2.DeviceAttributeApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceCapacity"): + return &applyconfigurationsresourcev1beta2.DeviceCapacityApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceClaim"): + return &applyconfigurationsresourcev1beta2.DeviceClaimApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceClaimConfiguration"): + return &applyconfigurationsresourcev1beta2.DeviceClaimConfigurationApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceClass"): + return &applyconfigurationsresourcev1beta2.DeviceClassApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceClassConfiguration"): + return &applyconfigurationsresourcev1beta2.DeviceClassConfigurationApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceClassSpec"): + return &applyconfigurationsresourcev1beta2.DeviceClassSpecApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceConfiguration"): + return &applyconfigurationsresourcev1beta2.DeviceConfigurationApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceConstraint"): + return &applyconfigurationsresourcev1beta2.DeviceConstraintApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceCounterConsumption"): + return &applyconfigurationsresourcev1beta2.DeviceCounterConsumptionApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceRequest"): + return &applyconfigurationsresourcev1beta2.DeviceRequestApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceRequestAllocationResult"): + return &applyconfigurationsresourcev1beta2.DeviceRequestAllocationResultApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceSelector"): + return &applyconfigurationsresourcev1beta2.DeviceSelectorApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceSubRequest"): + return &applyconfigurationsresourcev1beta2.DeviceSubRequestApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceTaint"): + return &applyconfigurationsresourcev1beta2.DeviceTaintApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("DeviceToleration"): + return &applyconfigurationsresourcev1beta2.DeviceTolerationApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ExactDeviceRequest"): + return &applyconfigurationsresourcev1beta2.ExactDeviceRequestApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("NetworkDeviceData"): + return &applyconfigurationsresourcev1beta2.NetworkDeviceDataApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("OpaqueDeviceConfiguration"): + return &applyconfigurationsresourcev1beta2.OpaqueDeviceConfigurationApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceClaim"): + return &applyconfigurationsresourcev1beta2.ResourceClaimApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceClaimConsumerReference"): + return &applyconfigurationsresourcev1beta2.ResourceClaimConsumerReferenceApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceClaimSpec"): + return &applyconfigurationsresourcev1beta2.ResourceClaimSpecApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceClaimStatus"): + return &applyconfigurationsresourcev1beta2.ResourceClaimStatusApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceClaimTemplate"): + return &applyconfigurationsresourcev1beta2.ResourceClaimTemplateApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceClaimTemplateSpec"): + return &applyconfigurationsresourcev1beta2.ResourceClaimTemplateSpecApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourcePool"): + return &applyconfigurationsresourcev1beta2.ResourcePoolApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceSlice"): + return &applyconfigurationsresourcev1beta2.ResourceSliceApplyConfiguration{} + case resourcev1beta2.SchemeGroupVersion.WithKind("ResourceSliceSpec"): + return &applyconfigurationsresourcev1beta2.ResourceSliceSpecApplyConfiguration{} + + // Group=scheduling.k8s.io, Version=v1 + case schedulingv1.SchemeGroupVersion.WithKind("PriorityClass"): + return &applyconfigurationsschedulingv1.PriorityClassApplyConfiguration{} + + // Group=scheduling.k8s.io, Version=v1alpha1 + case schedulingv1alpha1.SchemeGroupVersion.WithKind("PriorityClass"): + return &applyconfigurationsschedulingv1alpha1.PriorityClassApplyConfiguration{} + + // Group=scheduling.k8s.io, Version=v1beta1 + case schedulingv1beta1.SchemeGroupVersion.WithKind("PriorityClass"): + return &applyconfigurationsschedulingv1beta1.PriorityClassApplyConfiguration{} + + // Group=storage.k8s.io, Version=v1 + case storagev1.SchemeGroupVersion.WithKind("CSIDriver"): + return &applyconfigurationsstoragev1.CSIDriverApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("CSIDriverSpec"): + return &applyconfigurationsstoragev1.CSIDriverSpecApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("CSINode"): + return &applyconfigurationsstoragev1.CSINodeApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("CSINodeDriver"): + return &applyconfigurationsstoragev1.CSINodeDriverApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("CSINodeSpec"): + return &applyconfigurationsstoragev1.CSINodeSpecApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("CSIStorageCapacity"): + return &applyconfigurationsstoragev1.CSIStorageCapacityApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("StorageClass"): + return &applyconfigurationsstoragev1.StorageClassApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("TokenRequest"): + return &applyconfigurationsstoragev1.TokenRequestApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeAttachment"): + return &applyconfigurationsstoragev1.VolumeAttachmentApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeAttachmentSource"): + return &applyconfigurationsstoragev1.VolumeAttachmentSourceApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeAttachmentSpec"): + return &applyconfigurationsstoragev1.VolumeAttachmentSpecApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeAttachmentStatus"): + return &applyconfigurationsstoragev1.VolumeAttachmentStatusApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeAttributesClass"): + return &applyconfigurationsstoragev1.VolumeAttributesClassApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeError"): + return &applyconfigurationsstoragev1.VolumeErrorApplyConfiguration{} + case storagev1.SchemeGroupVersion.WithKind("VolumeNodeResources"): + return &applyconfigurationsstoragev1.VolumeNodeResourcesApplyConfiguration{} + + // Group=storage.k8s.io, Version=v1alpha1 + case storagev1alpha1.SchemeGroupVersion.WithKind("CSIStorageCapacity"): + return &applyconfigurationsstoragev1alpha1.CSIStorageCapacityApplyConfiguration{} + case storagev1alpha1.SchemeGroupVersion.WithKind("VolumeAttachment"): + return &applyconfigurationsstoragev1alpha1.VolumeAttachmentApplyConfiguration{} + case storagev1alpha1.SchemeGroupVersion.WithKind("VolumeAttachmentSource"): + return &applyconfigurationsstoragev1alpha1.VolumeAttachmentSourceApplyConfiguration{} + case storagev1alpha1.SchemeGroupVersion.WithKind("VolumeAttachmentSpec"): + return &applyconfigurationsstoragev1alpha1.VolumeAttachmentSpecApplyConfiguration{} + case storagev1alpha1.SchemeGroupVersion.WithKind("VolumeAttachmentStatus"): + return &applyconfigurationsstoragev1alpha1.VolumeAttachmentStatusApplyConfiguration{} + case storagev1alpha1.SchemeGroupVersion.WithKind("VolumeAttributesClass"): + return &applyconfigurationsstoragev1alpha1.VolumeAttributesClassApplyConfiguration{} + case storagev1alpha1.SchemeGroupVersion.WithKind("VolumeError"): + return &applyconfigurationsstoragev1alpha1.VolumeErrorApplyConfiguration{} + + // Group=storage.k8s.io, Version=v1beta1 + case storagev1beta1.SchemeGroupVersion.WithKind("CSIDriver"): + return &applyconfigurationsstoragev1beta1.CSIDriverApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("CSIDriverSpec"): + return &applyconfigurationsstoragev1beta1.CSIDriverSpecApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("CSINode"): + return &applyconfigurationsstoragev1beta1.CSINodeApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("CSINodeDriver"): + return &applyconfigurationsstoragev1beta1.CSINodeDriverApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("CSINodeSpec"): + return &applyconfigurationsstoragev1beta1.CSINodeSpecApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("CSIStorageCapacity"): + return &applyconfigurationsstoragev1beta1.CSIStorageCapacityApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("StorageClass"): + return &applyconfigurationsstoragev1beta1.StorageClassApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("TokenRequest"): + return &applyconfigurationsstoragev1beta1.TokenRequestApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeAttachment"): + return &applyconfigurationsstoragev1beta1.VolumeAttachmentApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeAttachmentSource"): + return &applyconfigurationsstoragev1beta1.VolumeAttachmentSourceApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeAttachmentSpec"): + return &applyconfigurationsstoragev1beta1.VolumeAttachmentSpecApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeAttachmentStatus"): + return &applyconfigurationsstoragev1beta1.VolumeAttachmentStatusApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeAttributesClass"): + return &applyconfigurationsstoragev1beta1.VolumeAttributesClassApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeError"): + return &applyconfigurationsstoragev1beta1.VolumeErrorApplyConfiguration{} + case storagev1beta1.SchemeGroupVersion.WithKind("VolumeNodeResources"): + return &applyconfigurationsstoragev1beta1.VolumeNodeResourcesApplyConfiguration{} + + // Group=storagemigration.k8s.io, Version=v1alpha1 + case storagemigrationv1alpha1.SchemeGroupVersion.WithKind("GroupVersionResource"): + return &applyconfigurationsstoragemigrationv1alpha1.GroupVersionResourceApplyConfiguration{} + case storagemigrationv1alpha1.SchemeGroupVersion.WithKind("MigrationCondition"): + return &applyconfigurationsstoragemigrationv1alpha1.MigrationConditionApplyConfiguration{} + case storagemigrationv1alpha1.SchemeGroupVersion.WithKind("StorageVersionMigration"): + return &applyconfigurationsstoragemigrationv1alpha1.StorageVersionMigrationApplyConfiguration{} + case storagemigrationv1alpha1.SchemeGroupVersion.WithKind("StorageVersionMigrationSpec"): + return &applyconfigurationsstoragemigrationv1alpha1.StorageVersionMigrationSpecApplyConfiguration{} + case storagemigrationv1alpha1.SchemeGroupVersion.WithKind("StorageVersionMigrationStatus"): + return &applyconfigurationsstoragemigrationv1alpha1.StorageVersionMigrationStatusApplyConfiguration{} + + } + return nil +} + +func NewTypeConverter(scheme *runtime.Scheme) managedfields.TypeConverter { + return managedfields.NewSchemeTypeConverter(scheme, internal.Parser()) +} diff --git a/vendor/modules.txt b/vendor/modules.txt index 2ccfdebb..98149811 100644 --- a/vendor/modules.txt +++ b/vendor/modules.txt @@ -518,6 +518,11 @@ github.com/spf13/pflag # github.com/stoewer/go-strcase v1.3.1 ## explicit; go 1.11 github.com/stoewer/go-strcase +# github.com/stretchr/testify v1.11.1 +## explicit; go 1.17 +github.com/stretchr/testify/assert +github.com/stretchr/testify/assert/yaml +github.com/stretchr/testify/require # github.com/tmc/langchaingo v0.1.14 ## explicit; go 1.24.4 github.com/tmc/langchaingo/llms @@ -916,6 +921,7 @@ k8s.io/api/flowcontrol/v1 k8s.io/api/flowcontrol/v1beta1 k8s.io/api/flowcontrol/v1beta2 k8s.io/api/flowcontrol/v1beta3 +k8s.io/api/imagepolicy/v1alpha1 k8s.io/api/networking/v1 k8s.io/api/networking/v1beta1 k8s.io/api/node/v1 @@ -996,6 +1002,7 @@ k8s.io/apimachinery/pkg/util/naming k8s.io/apimachinery/pkg/util/net k8s.io/apimachinery/pkg/util/portforward k8s.io/apimachinery/pkg/util/proxy +k8s.io/apimachinery/pkg/util/rand k8s.io/apimachinery/pkg/util/remotecommand k8s.io/apimachinery/pkg/util/runtime k8s.io/apimachinery/pkg/util/sets @@ -1058,6 +1065,7 @@ k8s.io/apiserver/plugin/pkg/authorizer/webhook k8s.io/apiserver/plugin/pkg/authorizer/webhook/metrics # k8s.io/client-go v0.34.8 ## explicit; go 1.24.0 +k8s.io/client-go/applyconfigurations k8s.io/client-go/applyconfigurations/admissionregistration/v1 k8s.io/client-go/applyconfigurations/admissionregistration/v1alpha1 k8s.io/client-go/applyconfigurations/admissionregistration/v1beta1 @@ -1087,6 +1095,7 @@ k8s.io/client-go/applyconfigurations/flowcontrol/v1 k8s.io/client-go/applyconfigurations/flowcontrol/v1beta1 k8s.io/client-go/applyconfigurations/flowcontrol/v1beta2 k8s.io/client-go/applyconfigurations/flowcontrol/v1beta3 +k8s.io/client-go/applyconfigurations/imagepolicy/v1alpha1 k8s.io/client-go/applyconfigurations/internal k8s.io/client-go/applyconfigurations/meta/v1 k8s.io/client-go/applyconfigurations/networking/v1 @@ -1406,6 +1415,8 @@ sigs.k8s.io/controller-runtime/pkg/certwatcher/metrics sigs.k8s.io/controller-runtime/pkg/client sigs.k8s.io/controller-runtime/pkg/client/apiutil sigs.k8s.io/controller-runtime/pkg/client/config +sigs.k8s.io/controller-runtime/pkg/client/fake +sigs.k8s.io/controller-runtime/pkg/client/interceptor sigs.k8s.io/controller-runtime/pkg/cluster sigs.k8s.io/controller-runtime/pkg/config sigs.k8s.io/controller-runtime/pkg/controller @@ -1421,6 +1432,7 @@ sigs.k8s.io/controller-runtime/pkg/internal/field/selector sigs.k8s.io/controller-runtime/pkg/internal/httpserver sigs.k8s.io/controller-runtime/pkg/internal/log sigs.k8s.io/controller-runtime/pkg/internal/metrics +sigs.k8s.io/controller-runtime/pkg/internal/objectutil sigs.k8s.io/controller-runtime/pkg/internal/recorder sigs.k8s.io/controller-runtime/pkg/internal/source sigs.k8s.io/controller-runtime/pkg/internal/syncs diff --git a/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/client.go b/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/client.go new file mode 100644 index 00000000..f88a44ed --- /dev/null +++ b/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/client.go @@ -0,0 +1,1911 @@ +/* +Copyright 2018 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package fake + +import ( + "bytes" + "context" + "errors" + "fmt" + "reflect" + "runtime/debug" + "strconv" + "strings" + "sync" + "time" + + /* + Stick with gopkg.in/evanphx/json-patch.v4 here to match + upstream Kubernetes code and avoid breaking changes introduced in v5. + - Kubernetes itself remains on json-patch v4 to avoid compatibility issues + tied to v5’s stricter RFC6902 compliance. + - The fake client code is adapted from client-go’s testing fixture, which also + relies on json-patch v4. + See: + https://github.com/kubernetes/kubernetes/pull/91622 (discussion of why K8s + stays on v4) + https://github.com/kubernetes/kubernetes/pull/120326 (v5.6.0+incompatible + missing a critical fix) + */ + + jsonpatch "gopkg.in/evanphx/json-patch.v4" + appsv1 "k8s.io/api/apps/v1" + authenticationv1 "k8s.io/api/authentication/v1" + autoscalingv1 "k8s.io/api/autoscaling/v1" + corev1 "k8s.io/api/core/v1" + policyv1 "k8s.io/api/policy/v1" + policyv1beta1 "k8s.io/api/policy/v1beta1" + apierrors "k8s.io/apimachinery/pkg/api/errors" + "k8s.io/apimachinery/pkg/api/meta" + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" + "k8s.io/apimachinery/pkg/apis/meta/v1/unstructured" + "k8s.io/apimachinery/pkg/apis/meta/v1/validation" + "k8s.io/apimachinery/pkg/fields" + "k8s.io/apimachinery/pkg/labels" + "k8s.io/apimachinery/pkg/runtime" + "k8s.io/apimachinery/pkg/runtime/schema" + "k8s.io/apimachinery/pkg/runtime/serializer" + "k8s.io/apimachinery/pkg/types" + "k8s.io/apimachinery/pkg/util/json" + "k8s.io/apimachinery/pkg/util/managedfields" + utilrand "k8s.io/apimachinery/pkg/util/rand" + "k8s.io/apimachinery/pkg/util/sets" + "k8s.io/apimachinery/pkg/util/strategicpatch" + "k8s.io/apimachinery/pkg/util/validation/field" + "k8s.io/apimachinery/pkg/watch" + clientgoapplyconfigurations "k8s.io/client-go/applyconfigurations" + "k8s.io/client-go/kubernetes/scheme" + "k8s.io/client-go/testing" + "k8s.io/utils/ptr" + + "sigs.k8s.io/controller-runtime/pkg/client" + "sigs.k8s.io/controller-runtime/pkg/client/apiutil" + "sigs.k8s.io/controller-runtime/pkg/client/interceptor" + "sigs.k8s.io/controller-runtime/pkg/internal/field/selector" + "sigs.k8s.io/controller-runtime/pkg/internal/objectutil" +) + +type versionedTracker struct { + testing.ObjectTracker + scheme *runtime.Scheme + withStatusSubresource sets.Set[schema.GroupVersionKind] + usesFieldManagedObjectTracker bool +} + +type fakeClient struct { + // trackerWriteLock must be acquired before writing to + // the tracker or performing reads that affect a following + // write. + trackerWriteLock sync.Mutex + tracker versionedTracker + + schemeLock sync.RWMutex + scheme *runtime.Scheme + + restMapper meta.RESTMapper + withStatusSubresource sets.Set[schema.GroupVersionKind] + + // indexes maps each GroupVersionKind (GVK) to the indexes registered for that GVK. + // The inner map maps from index name to IndexerFunc. + indexes map[schema.GroupVersionKind]map[string]client.IndexerFunc + // indexesLock must be held when accessing indexes. + indexesLock sync.RWMutex + + returnManagedFields bool +} + +var _ client.WithWatch = &fakeClient{} + +const ( + maxNameLength = 63 + randomLength = 5 + maxGeneratedNameLength = maxNameLength - randomLength + + subResourceScale = "scale" +) + +// NewFakeClient creates a new fake client for testing. +// You can choose to initialize it with a slice of runtime.Object. +func NewFakeClient(initObjs ...runtime.Object) client.WithWatch { + return NewClientBuilder().WithRuntimeObjects(initObjs...).Build() +} + +// NewClientBuilder returns a new builder to create a fake client. +func NewClientBuilder() *ClientBuilder { + return &ClientBuilder{} +} + +// ClientBuilder builds a fake client. +type ClientBuilder struct { + scheme *runtime.Scheme + restMapper meta.RESTMapper + initObject []client.Object + initLists []client.ObjectList + initRuntimeObjects []runtime.Object + withStatusSubresource []client.Object + objectTracker testing.ObjectTracker + interceptorFuncs *interceptor.Funcs + typeConverters []managedfields.TypeConverter + returnManagedFields bool + isBuilt bool + + // indexes maps each GroupVersionKind (GVK) to the indexes registered for that GVK. + // The inner map maps from index name to IndexerFunc. + indexes map[schema.GroupVersionKind]map[string]client.IndexerFunc +} + +// WithScheme sets this builder's internal scheme. +// If not set, defaults to client-go's global scheme.Scheme. +func (f *ClientBuilder) WithScheme(scheme *runtime.Scheme) *ClientBuilder { + f.scheme = scheme + return f +} + +// WithRESTMapper sets this builder's restMapper. +// The restMapper is directly set as mapper in the Client. This can be used for example +// with a meta.DefaultRESTMapper to provide a static rest mapping. +// If not set, defaults to an empty meta.DefaultRESTMapper. +func (f *ClientBuilder) WithRESTMapper(restMapper meta.RESTMapper) *ClientBuilder { + f.restMapper = restMapper + return f +} + +// WithObjects can be optionally used to initialize this fake client with client.Object(s). +func (f *ClientBuilder) WithObjects(initObjs ...client.Object) *ClientBuilder { + f.initObject = append(f.initObject, initObjs...) + return f +} + +// WithLists can be optionally used to initialize this fake client with client.ObjectList(s). +func (f *ClientBuilder) WithLists(initLists ...client.ObjectList) *ClientBuilder { + f.initLists = append(f.initLists, initLists...) + return f +} + +// WithRuntimeObjects can be optionally used to initialize this fake client with runtime.Object(s). +func (f *ClientBuilder) WithRuntimeObjects(initRuntimeObjs ...runtime.Object) *ClientBuilder { + f.initRuntimeObjects = append(f.initRuntimeObjects, initRuntimeObjs...) + return f +} + +// WithObjectTracker can be optionally used to initialize this fake client with testing.ObjectTracker. +// Setting this is incompatible with setting WithTypeConverters, as they are a setting on the +// tracker. +func (f *ClientBuilder) WithObjectTracker(ot testing.ObjectTracker) *ClientBuilder { + f.objectTracker = ot + return f +} + +// WithIndex can be optionally used to register an index with name `field` and indexer `extractValue` +// for API objects of the same GroupVersionKind (GVK) as `obj` in the fake client. +// It can be invoked multiple times, both with objects of the same GVK or different ones. +// Invoking WithIndex twice with the same `field` and GVK (via `obj`) arguments will panic. +// WithIndex retrieves the GVK of `obj` using the scheme registered via WithScheme if +// WithScheme was previously invoked, the default scheme otherwise. +func (f *ClientBuilder) WithIndex(obj runtime.Object, field string, extractValue client.IndexerFunc) *ClientBuilder { + objScheme := f.scheme + if objScheme == nil { + objScheme = scheme.Scheme + } + + gvk, err := apiutil.GVKForObject(obj, objScheme) + if err != nil { + panic(err) + } + + // If this is the first index being registered, we initialize the map storing all the indexes. + if f.indexes == nil { + f.indexes = make(map[schema.GroupVersionKind]map[string]client.IndexerFunc) + } + + // If this is the first index being registered for the GroupVersionKind of `obj`, we initialize + // the map storing the indexes for that GroupVersionKind. + if f.indexes[gvk] == nil { + f.indexes[gvk] = make(map[string]client.IndexerFunc) + } + + if _, fieldAlreadyIndexed := f.indexes[gvk][field]; fieldAlreadyIndexed { + panic(fmt.Errorf("indexer conflict: field %s for GroupVersionKind %v is already indexed", + field, gvk)) + } + + f.indexes[gvk][field] = extractValue + + return f +} + +// WithStatusSubresource configures the passed object with a status subresource, which means +// calls to Update and Patch will not alter its status. +func (f *ClientBuilder) WithStatusSubresource(o ...client.Object) *ClientBuilder { + f.withStatusSubresource = append(f.withStatusSubresource, o...) + return f +} + +// WithInterceptorFuncs configures the client methods to be intercepted using the provided interceptor.Funcs. +func (f *ClientBuilder) WithInterceptorFuncs(interceptorFuncs interceptor.Funcs) *ClientBuilder { + f.interceptorFuncs = &interceptorFuncs + return f +} + +// WithTypeConverters sets the type converters for the fake client. The list is ordered and the first +// non-erroring converter is used. A type converter must be provided for all types the client is used +// for, otherwise it will error. +// +// This setting is incompatible with WithObjectTracker, as the type converters are a setting on the tracker. +// +// If unset, this defaults to: +// * clientgoapplyconfigurations.NewTypeConverter(scheme.Scheme), +// * managedfields.NewDeducedTypeConverter(), +// +// Be aware that the behavior of the `NewDeducedTypeConverter` might not match the behavior of the +// Kubernetes APIServer, it is recommended to provide a type converter for your types. TypeConverters +// are generated along with ApplyConfigurations. +func (f *ClientBuilder) WithTypeConverters(typeConverters ...managedfields.TypeConverter) *ClientBuilder { + f.typeConverters = append(f.typeConverters, typeConverters...) + return f +} + +// WithReturnManagedFields configures the fake client to return managedFields +// on objects. +func (f *ClientBuilder) WithReturnManagedFields() *ClientBuilder { + f.returnManagedFields = true + return f +} + +// Build builds and returns a new fake client. +func (f *ClientBuilder) Build() client.WithWatch { + if f.isBuilt { + panic("Build() must not be called multiple times when creating a ClientBuilder") + } + if f.scheme == nil { + f.scheme = scheme.Scheme + } + if f.restMapper == nil { + f.restMapper = meta.NewDefaultRESTMapper([]schema.GroupVersion{}) + } + + withStatusSubResource := sets.New(inTreeResourcesWithStatus()...) + for _, o := range f.withStatusSubresource { + gvk, err := apiutil.GVKForObject(o, f.scheme) + if err != nil { + panic(fmt.Errorf("failed to get gvk for object %T: %w", withStatusSubResource, err)) + } + withStatusSubResource.Insert(gvk) + } + + if f.objectTracker != nil && len(f.typeConverters) > 0 { + panic(errors.New("WithObjectTracker and WithTypeConverters are incompatible")) + } + + var usesFieldManagedObjectTracker bool + if f.objectTracker == nil { + if len(f.typeConverters) == 0 { + // Use corresponding scheme to ensure the converter error + // for types it can't handle. + clientGoScheme := runtime.NewScheme() + if err := scheme.AddToScheme(clientGoScheme); err != nil { + panic(fmt.Sprintf("failed to construct client-go scheme: %v", err)) + } + f.typeConverters = []managedfields.TypeConverter{ + clientgoapplyconfigurations.NewTypeConverter(clientGoScheme), + managedfields.NewDeducedTypeConverter(), + } + } + f.objectTracker = testing.NewFieldManagedObjectTracker( + f.scheme, + serializer.NewCodecFactory(f.scheme).UniversalDecoder(), + multiTypeConverter{upstream: f.typeConverters}, + ) + usesFieldManagedObjectTracker = true + } + tracker := versionedTracker{ + ObjectTracker: f.objectTracker, + scheme: f.scheme, + withStatusSubresource: withStatusSubResource, + usesFieldManagedObjectTracker: usesFieldManagedObjectTracker, + } + + for _, obj := range f.initObject { + if err := tracker.Add(obj); err != nil { + panic(fmt.Errorf("failed to add object %v to fake client: %w", obj, err)) + } + } + for _, obj := range f.initLists { + if err := tracker.Add(obj); err != nil { + panic(fmt.Errorf("failed to add list %v to fake client: %w", obj, err)) + } + } + for _, obj := range f.initRuntimeObjects { + if err := tracker.Add(obj); err != nil { + panic(fmt.Errorf("failed to add runtime object %v to fake client: %w", obj, err)) + } + } + + var result client.WithWatch = &fakeClient{ + tracker: tracker, + scheme: f.scheme, + restMapper: f.restMapper, + indexes: f.indexes, + withStatusSubresource: withStatusSubResource, + returnManagedFields: f.returnManagedFields, + } + + if f.interceptorFuncs != nil { + result = interceptor.NewClient(result, *f.interceptorFuncs) + } + + f.isBuilt = true + return result +} + +const trackerAddResourceVersion = "999" + +func (t versionedTracker) Add(obj runtime.Object) error { + var objects []runtime.Object + if meta.IsListType(obj) { + var err error + objects, err = meta.ExtractList(obj) + if err != nil { + return err + } + } else { + objects = []runtime.Object{obj} + } + for _, obj := range objects { + accessor, err := meta.Accessor(obj) + if err != nil { + return fmt.Errorf("failed to get accessor for object: %w", err) + } + if accessor.GetDeletionTimestamp() != nil && len(accessor.GetFinalizers()) == 0 { + return fmt.Errorf("refusing to create obj %s with metadata.deletionTimestamp but no finalizers", accessor.GetName()) + } + if accessor.GetResourceVersion() == "" { + // We use a "magic" value of 999 here because this field + // is parsed as uint and and 0 is already used in Update. + // As we can't go lower, go very high instead so this can + // be recognized + accessor.SetResourceVersion(trackerAddResourceVersion) + } + + obj, err = convertFromUnstructuredIfNecessary(t.scheme, obj) + if err != nil { + return err + } + + // If the fieldManager can not decode fields, it will just silently clear them. This is pretty + // much guaranteed not to be what someone that initializes a fake client with objects that + // have them set wants, so validate them here. + // Ref https://github.com/kubernetes/kubernetes/blob/a956ef4862993b825bcd524a19260192ff1da72d/staging/src/k8s.io/apimachinery/pkg/util/managedfields/internal/fieldmanager.go#L105 + if t.usesFieldManagedObjectTracker { + if err := managedfields.ValidateManagedFields(accessor.GetManagedFields()); err != nil { + return fmt.Errorf("invalid managedFields on %T: %w", obj, err) + } + } + if err := t.ObjectTracker.Add(obj); err != nil { + return err + } + } + + return nil +} + +func (t versionedTracker) Create(gvr schema.GroupVersionResource, obj runtime.Object, ns string, opts ...metav1.CreateOptions) error { + accessor, err := meta.Accessor(obj) + if err != nil { + return fmt.Errorf("failed to get accessor for object: %w", err) + } + if accessor.GetName() == "" { + gvk, _ := apiutil.GVKForObject(obj, t.scheme) + return apierrors.NewInvalid( + gvk.GroupKind(), + accessor.GetName(), + field.ErrorList{field.Required(field.NewPath("metadata.name"), "name is required")}) + } + if accessor.GetResourceVersion() != "" { + return apierrors.NewBadRequest("resourceVersion can not be set for Create requests") + } + accessor.SetResourceVersion("1") + obj, err = convertFromUnstructuredIfNecessary(t.scheme, obj) + if err != nil { + return err + } + if err := t.ObjectTracker.Create(gvr, obj, ns, opts...); err != nil { + accessor.SetResourceVersion("") + return err + } + + return nil +} + +// convertFromUnstructuredIfNecessary will convert runtime.Unstructured for a GVK that is recognized +// by the schema into the whatever the schema produces with New() for said GVK. +// This is required because the tracker unconditionally saves on manipulations, but its List() implementation +// tries to assign whatever it finds into a ListType it gets from schema.New() - Thus we have to ensure +// we save as the very same type, otherwise subsequent List requests will fail. +func convertFromUnstructuredIfNecessary(s *runtime.Scheme, o runtime.Object) (runtime.Object, error) { + u, isUnstructured := o.(runtime.Unstructured) + if !isUnstructured { + return o, nil + } + gvk := o.GetObjectKind().GroupVersionKind() + if !s.Recognizes(gvk) { + return o, nil + } + + typed, err := s.New(gvk) + if err != nil { + return nil, fmt.Errorf("scheme recognizes %s but failed to produce an object for it: %w", gvk, err) + } + if _, isTypedUnstructured := typed.(runtime.Unstructured); isTypedUnstructured { + return o, nil + } + + unstructuredSerialized, err := json.Marshal(u) + if err != nil { + return nil, fmt.Errorf("failed to serialize %T: %w", unstructuredSerialized, err) + } + if err := json.Unmarshal(unstructuredSerialized, typed); err != nil { + return nil, fmt.Errorf("failed to unmarshal the content of %T into %T: %w", u, typed, err) + } + + return typed, nil +} + +func (t versionedTracker) Update(gvr schema.GroupVersionResource, obj runtime.Object, ns string, opts ...metav1.UpdateOptions) error { + updateOpts, err := getSingleOrZeroOptions(opts) + if err != nil { + return err + } + + return t.update(gvr, obj, ns, false, false, updateOpts) +} + +func (t versionedTracker) update(gvr schema.GroupVersionResource, obj runtime.Object, ns string, isStatus, deleting bool, opts metav1.UpdateOptions) error { + gvk, err := apiutil.GVKForObject(obj, t.scheme) + if err != nil { + return err + } + obj, err = t.updateObject(gvr, obj, ns, isStatus, deleting, opts.DryRun) + if err != nil { + return err + } + if obj == nil { + return nil + } + + if u, unstructured := obj.(*unstructured.Unstructured); unstructured { + u.SetGroupVersionKind(gvk) + } + + return t.ObjectTracker.Update(gvr, obj, ns, opts) +} + +func (t versionedTracker) Patch(gvr schema.GroupVersionResource, obj runtime.Object, ns string, opts ...metav1.PatchOptions) error { + patchOptions, err := getSingleOrZeroOptions(opts) + if err != nil { + return err + } + + // We apply patches using a client-go reaction that ends up calling the trackers Patch. As we can't change + // that reaction, we use the callstack to figure out if this originated from the status client. + isStatus := bytes.Contains(debug.Stack(), []byte("sigs.k8s.io/controller-runtime/pkg/client/fake.(*fakeSubResourceClient).statusPatch")) + + obj, err = t.updateObject(gvr, obj, ns, isStatus, false, patchOptions.DryRun) + if err != nil { + return err + } + if obj == nil { + return nil + } + + return t.ObjectTracker.Patch(gvr, obj, ns, patchOptions) +} + +func (t versionedTracker) updateObject(gvr schema.GroupVersionResource, obj runtime.Object, ns string, isStatus, deleting bool, dryRun []string) (runtime.Object, error) { + accessor, err := meta.Accessor(obj) + if err != nil { + return nil, fmt.Errorf("failed to get accessor for object: %w", err) + } + + if accessor.GetName() == "" { + gvk, _ := apiutil.GVKForObject(obj, t.scheme) + return nil, apierrors.NewInvalid( + gvk.GroupKind(), + accessor.GetName(), + field.ErrorList{field.Required(field.NewPath("metadata.name"), "name is required")}) + } + + gvk, err := apiutil.GVKForObject(obj, t.scheme) + if err != nil { + return nil, err + } + + oldObject, err := t.ObjectTracker.Get(gvr, ns, accessor.GetName()) + if err != nil { + // If the resource is not found and the resource allows create on update, issue a + // create instead. + if apierrors.IsNotFound(err) && allowsCreateOnUpdate(gvk) { + return nil, t.Create(gvr, obj, ns) + } + return nil, err + } + + if t.withStatusSubresource.Has(gvk) { + if isStatus { // copy everything but status and metadata.ResourceVersion from original object + if err := copyStatusFrom(obj, oldObject); err != nil { + return nil, fmt.Errorf("failed to copy non-status field for object with status subresouce: %w", err) + } + passedRV := accessor.GetResourceVersion() + if err := copyFrom(oldObject, obj); err != nil { + return nil, fmt.Errorf("failed to restore non-status fields: %w", err) + } + accessor.SetResourceVersion(passedRV) + } else { // copy status from original object + if err := copyStatusFrom(oldObject, obj); err != nil { + return nil, fmt.Errorf("failed to copy the status for object with status subresource: %w", err) + } + } + } else if isStatus { + return nil, apierrors.NewNotFound(gvr.GroupResource(), accessor.GetName()) + } + + oldAccessor, err := meta.Accessor(oldObject) + if err != nil { + return nil, err + } + + // If the new object does not have the resource version set and it allows unconditional update, + // default it to the resource version of the existing resource + if accessor.GetResourceVersion() == "" { + switch { + case allowsUnconditionalUpdate(gvk): + accessor.SetResourceVersion(oldAccessor.GetResourceVersion()) + // This is needed because if the patch explicitly sets the RV to null, the client-go reaction we use + // to apply it and whose output we process here will have it unset. It is not clear why the Kubernetes + // apiserver accepts such a patch, but it does so we just copy that behavior. + // Kubernetes apiserver behavior can be checked like this: + // `kubectl patch configmap foo --patch '{"metadata":{"annotations":{"foo":"bar"},"resourceVersion":null}}' -v=9` + case bytes. + Contains(debug.Stack(), []byte("sigs.k8s.io/controller-runtime/pkg/client/fake.(*fakeClient).Patch")): + // We apply patches using a client-go reaction that ends up calling the trackers Update. As we can't change + // that reaction, we use the callstack to figure out if this originated from the "fakeClient.Patch" func. + accessor.SetResourceVersion(oldAccessor.GetResourceVersion()) + } + } + + if accessor.GetResourceVersion() != oldAccessor.GetResourceVersion() { + return nil, apierrors.NewConflict(gvr.GroupResource(), accessor.GetName(), errors.New("object was modified")) + } + if oldAccessor.GetResourceVersion() == "" { + oldAccessor.SetResourceVersion("0") + } + intResourceVersion, err := strconv.ParseUint(oldAccessor.GetResourceVersion(), 10, 64) + if err != nil { + return nil, fmt.Errorf("can not convert resourceVersion %q to int: %w", oldAccessor.GetResourceVersion(), err) + } + intResourceVersion++ + accessor.SetResourceVersion(strconv.FormatUint(intResourceVersion, 10)) + + if !deleting && !deletionTimestampEqual(accessor, oldAccessor) { + return nil, fmt.Errorf("error: Unable to edit %s: metadata.deletionTimestamp field is immutable", accessor.GetName()) + } + + if !accessor.GetDeletionTimestamp().IsZero() && len(accessor.GetFinalizers()) == 0 { + return nil, t.ObjectTracker.Delete(gvr, accessor.GetNamespace(), accessor.GetName(), metav1.DeleteOptions{DryRun: dryRun}) + } + return convertFromUnstructuredIfNecessary(t.scheme, obj) +} + +func (c *fakeClient) Get(ctx context.Context, key client.ObjectKey, obj client.Object, opts ...client.GetOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + gvr, err := getGVRFromObject(obj, c.scheme) + if err != nil { + return err + } + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + o, err := c.tracker.Get(gvr, key.Namespace, key.Name) + if err != nil { + return err + } + + ta, err := meta.TypeAccessor(o) + if err != nil { + return err + } + + // If the final object is unstructuctured, the json + // representation must contain GVK or the apimachinery + // json serializer will error out. + ta.SetAPIVersion(gvk.GroupVersion().String()) + ta.SetKind(gvk.Kind) + + j, err := json.Marshal(o) + if err != nil { + return err + } + zero(obj) + if err := json.Unmarshal(j, obj); err != nil { + return err + } + + if !c.returnManagedFields { + obj.SetManagedFields(nil) + } + + return ensureTypeMeta(obj, gvk) +} + +func (c *fakeClient) Watch(ctx context.Context, list client.ObjectList, opts ...client.ListOption) (watch.Interface, error) { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(list); err != nil { + return nil, err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + + gvk, err := apiutil.GVKForObject(list, c.scheme) + if err != nil { + return nil, err + } + + gvk.Kind = strings.TrimSuffix(gvk.Kind, "List") + + listOpts := client.ListOptions{} + listOpts.ApplyOptions(opts) + + gvr, _ := meta.UnsafeGuessKindToResource(gvk) + return c.tracker.Watch(gvr, listOpts.Namespace) +} + +func (c *fakeClient) List(ctx context.Context, obj client.ObjectList, opts ...client.ListOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + + originalGVK := gvk + gvk.Kind = strings.TrimSuffix(gvk.Kind, "List") + listGVK := gvk + listGVK.Kind += "List" + + if _, isUnstructuredList := obj.(runtime.Unstructured); isUnstructuredList && !c.scheme.Recognizes(listGVK) { + // We need to register the ListKind with UnstructuredList: + // https://github.com/kubernetes/kubernetes/blob/7b2776b89fb1be28d4e9203bdeec079be903c103/staging/src/k8s.io/client-go/dynamic/fake/simple.go#L44-L51 + c.schemeLock.RUnlock() + c.schemeLock.Lock() + c.scheme.AddKnownTypeWithName(gvk.GroupVersion().WithKind(gvk.Kind+"List"), &unstructured.UnstructuredList{}) + c.schemeLock.Unlock() + c.schemeLock.RLock() + } + + listOpts := client.ListOptions{} + listOpts.ApplyOptions(opts) + + gvr, _ := meta.UnsafeGuessKindToResource(gvk) + o, err := c.tracker.List(gvr, gvk, listOpts.Namespace) + if err != nil { + return err + } + + j, err := json.Marshal(o) + if err != nil { + return err + } + zero(obj) + if err := ensureTypeMeta(obj, originalGVK); err != nil { + return err + } + objCopy := obj.DeepCopyObject().(client.ObjectList) + if err := json.Unmarshal(j, objCopy); err != nil { + return err + } + + objs, err := meta.ExtractList(objCopy) + if err != nil { + return err + } + + for _, o := range objs { + if err := ensureTypeMeta(o, gvk); err != nil { + return err + } + + if !c.returnManagedFields { + o.(metav1.Object).SetManagedFields(nil) + } + } + + if listOpts.LabelSelector == nil && listOpts.FieldSelector == nil { + return meta.SetList(obj, objs) + } + + // If we're here, either a label or field selector are specified (or both), so before we return + // the list we must filter it. If both selectors are set, they are ANDed. + filteredList, err := c.filterList(objs, gvk, listOpts.LabelSelector, listOpts.FieldSelector) + if err != nil { + return err + } + + return meta.SetList(obj, filteredList) +} + +func (c *fakeClient) filterList(list []runtime.Object, gvk schema.GroupVersionKind, ls labels.Selector, fs fields.Selector) ([]runtime.Object, error) { + // Filter the objects with the label selector + filteredList := list + if ls != nil { + objsFilteredByLabel, err := objectutil.FilterWithLabels(list, ls) + if err != nil { + return nil, err + } + filteredList = objsFilteredByLabel + } + + // Filter the result of the previous pass with the field selector + if fs != nil { + objsFilteredByField, err := c.filterWithFields(filteredList, gvk, fs) + if err != nil { + return nil, err + } + filteredList = objsFilteredByField + } + + return filteredList, nil +} + +func (c *fakeClient) filterWithFields(list []runtime.Object, gvk schema.GroupVersionKind, fs fields.Selector) ([]runtime.Object, error) { + requiresExact := selector.RequiresExactMatch(fs) + if !requiresExact { + return nil, fmt.Errorf(`field selector %s is not in one of the two supported forms "key==val" or "key=val"`, fs) + } + + c.indexesLock.RLock() + defer c.indexesLock.RUnlock() + // Field selection is mimicked via indexes, so there's no sane answer this function can give + // if there are no indexes registered for the GroupVersionKind of the objects in the list. + indexes := c.indexes[gvk] + for _, req := range fs.Requirements() { + if len(indexes) == 0 || indexes[req.Field] == nil { + return nil, fmt.Errorf("List on GroupVersionKind %v specifies selector on field %s, but no "+ + "index with name %s has been registered for GroupVersionKind %v", gvk, req.Field, req.Field, gvk) + } + } + + filteredList := make([]runtime.Object, 0, len(list)) + for _, obj := range list { + matches := true + for _, req := range fs.Requirements() { + indexExtractor := indexes[req.Field] + if !c.objMatchesFieldSelector(obj, indexExtractor, req.Value) { + matches = false + break + } + } + if matches { + filteredList = append(filteredList, obj) + } + } + return filteredList, nil +} + +func (c *fakeClient) objMatchesFieldSelector(o runtime.Object, extractIndex client.IndexerFunc, val string) bool { + obj, isClientObject := o.(client.Object) + if !isClientObject { + panic(fmt.Errorf("expected object %v to be of type client.Object, but it's not", o)) + } + + for _, extractedVal := range extractIndex(obj) { + if extractedVal == val { + return true + } + } + + return false +} + +func (c *fakeClient) Scheme() *runtime.Scheme { + return c.scheme +} + +func (c *fakeClient) RESTMapper() meta.RESTMapper { + return c.restMapper +} + +// GroupVersionKindFor returns the GroupVersionKind for the given object. +func (c *fakeClient) GroupVersionKindFor(obj runtime.Object) (schema.GroupVersionKind, error) { + return apiutil.GVKForObject(obj, c.scheme) +} + +// IsObjectNamespaced returns true if the GroupVersionKind of the object is namespaced. +func (c *fakeClient) IsObjectNamespaced(obj runtime.Object) (bool, error) { + return apiutil.IsObjectNamespaced(obj, c.scheme, c.restMapper) +} + +func (c *fakeClient) Create(ctx context.Context, obj client.Object, opts ...client.CreateOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + + createOptions := &client.CreateOptions{} + createOptions.ApplyOptions(opts) + + for _, dryRunOpt := range createOptions.DryRun { + if dryRunOpt == metav1.DryRunAll { + return nil + } + } + + gvr, err := getGVRFromObject(obj, c.scheme) + if err != nil { + return err + } + accessor, err := meta.Accessor(obj) + if err != nil { + return err + } + + if accessor.GetName() == "" && accessor.GetGenerateName() != "" { + base := accessor.GetGenerateName() + if len(base) > maxGeneratedNameLength { + base = base[:maxGeneratedNameLength] + } + accessor.SetName(fmt.Sprintf("%s%s", base, utilrand.String(randomLength))) + } + // Ignore attempts to set deletion timestamp + if !accessor.GetDeletionTimestamp().IsZero() { + accessor.SetDeletionTimestamp(nil) + } + + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + + c.trackerWriteLock.Lock() + defer c.trackerWriteLock.Unlock() + + if err := c.tracker.Create(gvr, obj, accessor.GetNamespace(), *createOptions.AsCreateOptions()); err != nil { + // The managed fields tracker sets gvk even on errors + _ = ensureTypeMeta(obj, gvk) + return err + } + + if !c.returnManagedFields { + obj.SetManagedFields(nil) + } + + return ensureTypeMeta(obj, gvk) +} + +func (c *fakeClient) Delete(ctx context.Context, obj client.Object, opts ...client.DeleteOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + + gvr, err := getGVRFromObject(obj, c.scheme) + if err != nil { + return err + } + accessor, err := meta.Accessor(obj) + if err != nil { + return err + } + delOptions := client.DeleteOptions{} + delOptions.ApplyOptions(opts) + + for _, dryRunOpt := range delOptions.DryRun { + if dryRunOpt == metav1.DryRunAll { + return nil + } + } + + c.trackerWriteLock.Lock() + defer c.trackerWriteLock.Unlock() + // Check the ResourceVersion if that Precondition was specified. + if delOptions.Preconditions != nil && delOptions.Preconditions.ResourceVersion != nil { + name := accessor.GetName() + dbObj, err := c.tracker.Get(gvr, accessor.GetNamespace(), name) + if err != nil { + return err + } + oldAccessor, err := meta.Accessor(dbObj) + if err != nil { + return err + } + actualRV := oldAccessor.GetResourceVersion() + expectRV := *delOptions.Preconditions.ResourceVersion + if actualRV != expectRV { + msg := fmt.Sprintf( + "the ResourceVersion in the precondition (%s) does not match the ResourceVersion in record (%s). "+ + "The object might have been modified", + expectRV, actualRV) + return apierrors.NewConflict(gvr.GroupResource(), name, errors.New(msg)) + } + } + + return c.deleteObjectLocked(gvr, accessor) +} + +func (c *fakeClient) DeleteAllOf(ctx context.Context, obj client.Object, opts ...client.DeleteAllOfOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + + dcOptions := client.DeleteAllOfOptions{} + dcOptions.ApplyOptions(opts) + + for _, dryRunOpt := range dcOptions.DryRun { + if dryRunOpt == metav1.DryRunAll { + return nil + } + } + + c.trackerWriteLock.Lock() + defer c.trackerWriteLock.Unlock() + + gvr, _ := meta.UnsafeGuessKindToResource(gvk) + o, err := c.tracker.List(gvr, gvk, dcOptions.Namespace) + if err != nil { + return err + } + + objs, err := meta.ExtractList(o) + if err != nil { + return err + } + filteredObjs, err := objectutil.FilterWithLabels(objs, dcOptions.LabelSelector) + if err != nil { + return err + } + for _, o := range filteredObjs { + accessor, err := meta.Accessor(o) + if err != nil { + return err + } + err = c.deleteObjectLocked(gvr, accessor) + if err != nil { + return err + } + } + return nil +} + +func (c *fakeClient) Update(ctx context.Context, obj client.Object, opts ...client.UpdateOption) error { + return c.update(obj, false, opts...) +} + +func (c *fakeClient) update(obj client.Object, isStatus bool, opts ...client.UpdateOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + + updateOptions := &client.UpdateOptions{} + updateOptions.ApplyOptions(opts) + + for _, dryRunOpt := range updateOptions.DryRun { + if dryRunOpt == metav1.DryRunAll { + return nil + } + } + + gvr, err := getGVRFromObject(obj, c.scheme) + if err != nil { + return err + } + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + accessor, err := meta.Accessor(obj) + if err != nil { + return err + } + + c.trackerWriteLock.Lock() + defer c.trackerWriteLock.Unlock() + + // Retain managed fields + // We can ignore all errors here since update will fail if we encounter an error. + obj.SetManagedFields(nil) + current, _ := c.tracker.Get(gvr, accessor.GetNamespace(), accessor.GetName()) + if currentMetaObj, ok := current.(metav1.Object); ok { + obj.SetManagedFields(currentMetaObj.GetManagedFields()) + } + + if err := c.tracker.update(gvr, obj, accessor.GetNamespace(), isStatus, false, *updateOptions.AsUpdateOptions()); err != nil { + return err + } + + if !c.returnManagedFields { + obj.SetManagedFields(nil) + } + + return ensureTypeMeta(obj, gvk) +} + +func (c *fakeClient) Patch(ctx context.Context, obj client.Object, patch client.Patch, opts ...client.PatchOption) error { + return c.patch(obj, patch, opts...) +} + +func (c *fakeClient) Apply(ctx context.Context, obj runtime.ApplyConfiguration, opts ...client.ApplyOption) error { + applyOpts := &client.ApplyOptions{} + applyOpts.ApplyOptions(opts) + + data, err := json.Marshal(obj) + if err != nil { + return fmt.Errorf("failed to marshal apply configuration: %w", err) + } + + u := &unstructured.Unstructured{} + if err := json.Unmarshal(data, u); err != nil { + return fmt.Errorf("failed to unmarshal apply configuration: %w", err) + } + + applyPatch := &fakeApplyPatch{} + + patchOpts := &client.PatchOptions{} + patchOpts.Raw = applyOpts.AsPatchOptions() + + if err := c.patch(u, applyPatch, patchOpts); err != nil { + return err + } + + acJSON, err := json.Marshal(u) + if err != nil { + return fmt.Errorf("failed to marshal patched object: %w", err) + } + + // We have to zero the object in case it contained a status and there is a + // status subresource. If its the private `unstructuredApplyConfiguration` + // we can not zero all of it, as that will cause the embedded Unstructured + // to be nil which then causes a NPD in the json.Unmarshal below. + switch reflect.TypeOf(obj).String() { + case "*client.unstructuredApplyConfiguration": + zero(reflect.ValueOf(obj).Elem().FieldByName("Unstructured").Interface()) + default: + zero(obj) + } + if err := json.Unmarshal(acJSON, obj); err != nil { + return fmt.Errorf("failed to unmarshal patched object: %w", err) + } + + return nil +} + +type fakeApplyPatch struct{} + +func (p *fakeApplyPatch) Type() types.PatchType { + return types.ApplyPatchType +} + +func (p *fakeApplyPatch) Data(obj client.Object) ([]byte, error) { + return json.Marshal(obj) +} + +func (c *fakeClient) patch(obj client.Object, patch client.Patch, opts ...client.PatchOption) error { + if err := c.addToSchemeIfUnknownAndUnstructuredOrPartial(obj); err != nil { + return err + } + + patchOptions := &client.PatchOptions{} + patchOptions.ApplyOptions(opts) + + if errs := validation.ValidatePatchOptions(patchOptions.AsPatchOptions(), patch.Type()); len(errs) > 0 { + return apierrors.NewInvalid(schema.GroupKind{Group: "meta.k8s.io", Kind: "PatchOptions"}, "", errs) + } + + c.schemeLock.RLock() + defer c.schemeLock.RUnlock() + + for _, dryRunOpt := range patchOptions.DryRun { + if dryRunOpt == metav1.DryRunAll { + return nil + } + } + + gvr, err := getGVRFromObject(obj, c.scheme) + if err != nil { + return err + } + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + accessor, err := meta.Accessor(obj) + if err != nil { + return err + } + + var isApplyCreate bool + c.trackerWriteLock.Lock() + defer c.trackerWriteLock.Unlock() + oldObj, err := c.tracker.Get(gvr, accessor.GetNamespace(), accessor.GetName()) + if err != nil { + if !apierrors.IsNotFound(err) || patch.Type() != types.ApplyPatchType { + return err + } + oldObj = &unstructured.Unstructured{} + isApplyCreate = true + } + oldAccessor, err := meta.Accessor(oldObj) + if err != nil { + return err + } + + // SSA deletionTimestamp updates are silently ignored + if patch.Type() == types.ApplyPatchType && !isApplyCreate { + obj.SetDeletionTimestamp(oldAccessor.GetDeletionTimestamp()) + } + + data, err := patch.Data(obj) + if err != nil { + return err + } + + action := testing.NewPatchActionWithOptions( + gvr, + accessor.GetNamespace(), + accessor.GetName(), + patch.Type(), + data, + *patchOptions.AsPatchOptions(), + ) + + // Apply is implemented in the tracker and calling it has side-effects + // such as bumping RV and updating managedFields timestamps, hence we + // can not dry-run it. Luckily, the only validation we use it for + // doesn't apply to SSA - Creating objects with non-nil deletionTimestamp + // through SSA is possible and updating the deletionTimestamp is valid, + // but has no effect. + if patch.Type() != types.ApplyPatchType { + // Apply patch without updating object. + // To remain in accordance with the behavior of k8s api behavior, + // a patch must not allow for changes to the deletionTimestamp of an object. + // The reaction() function applies the patch to the object and calls Update(), + // whereas dryPatch() replicates this behavior but skips the call to Update(). + // This ensures that the patch may be rejected if a deletionTimestamp is modified, prior + // to updating the object. + o, err := dryPatch(action, c.tracker) + if err != nil { + return err + } + newObj, err := meta.Accessor(o) + if err != nil { + return err + } + + // Validate that deletionTimestamp has not been changed + if !deletionTimestampEqual(newObj, oldAccessor) { + return fmt.Errorf("rejected patch, metadata.deletionTimestamp immutable") + } + } + + reaction := testing.ObjectReaction(c.tracker) + handled, o, err := reaction(action) + if err != nil { + return err + } + if !handled { + panic("tracker could not handle patch method") + } + + ta, err := meta.TypeAccessor(o) + if err != nil { + return err + } + + ta.SetAPIVersion(gvk.GroupVersion().String()) + ta.SetKind(gvk.Kind) + + j, err := json.Marshal(o) + if err != nil { + return err + } + zero(obj) + if err := json.Unmarshal(j, obj); err != nil { + return err + } + + if !c.returnManagedFields { + obj.SetManagedFields(nil) + } + + return ensureTypeMeta(obj, gvk) +} + +// Applying a patch results in a deletionTimestamp that is truncated to the nearest second. +// Check that the diff between a new and old deletion timestamp is within a reasonable threshold +// to be considered unchanged. +func deletionTimestampEqual(newObj metav1.Object, obj metav1.Object) bool { + newTime := newObj.GetDeletionTimestamp() + oldTime := obj.GetDeletionTimestamp() + + if newTime == nil || oldTime == nil { + return newTime == oldTime + } + return newTime.Time.Sub(oldTime.Time).Abs() < time.Second +} + +// The behavior of applying the patch is pulled out into dryPatch(), +// which applies the patch and returns an object, but does not Update() the object. +// This function returns a patched runtime object that may then be validated before a call to Update() is executed. +// This results in some code duplication, but was found to be a cleaner alternative than unmarshalling and introspecting the patch data +// and easier than refactoring the k8s client-go method upstream. +// Duplicate of upstream: https://github.com/kubernetes/client-go/blob/783d0d33626e59d55d52bfd7696b775851f92107/testing/fixture.go#L146-L194 +func dryPatch(action testing.PatchActionImpl, tracker testing.ObjectTracker) (runtime.Object, error) { + ns := action.GetNamespace() + gvr := action.GetResource() + + obj, err := tracker.Get(gvr, ns, action.GetName()) + if err != nil { + if apierrors.IsNotFound(err) && action.GetPatchType() == types.ApplyPatchType { + return &unstructured.Unstructured{}, nil + } + return nil, err + } + + old, err := json.Marshal(obj) + if err != nil { + return nil, err + } + + // reset the object in preparation to unmarshal, since unmarshal does not guarantee that fields + // in obj that are removed by patch are cleared + value := reflect.ValueOf(obj) + value.Elem().Set(reflect.New(value.Type().Elem()).Elem()) + + switch action.GetPatchType() { + case types.JSONPatchType: + patch, err := jsonpatch.DecodePatch(action.GetPatch()) + if err != nil { + return nil, err + } + modified, err := patch.Apply(old) + if err != nil { + return nil, err + } + + if err = json.Unmarshal(modified, obj); err != nil { + return nil, err + } + case types.MergePatchType: + modified, err := jsonpatch.MergePatch(old, action.GetPatch()) + if err != nil { + return nil, err + } + + if err := json.Unmarshal(modified, obj); err != nil { + return nil, err + } + case types.StrategicMergePatchType: + mergedByte, err := strategicpatch.StrategicMergePatch(old, action.GetPatch(), obj) + if err != nil { + return nil, err + } + if err = json.Unmarshal(mergedByte, obj); err != nil { + return nil, err + } + case types.ApplyCBORPatchType: + return nil, errors.New("apply CBOR patches are not supported in the fake client") + case types.ApplyPatchType: + return nil, errors.New("bug in controller-runtime: should not end up in dryPatch for SSA") + default: + return nil, fmt.Errorf("%s PatchType is not supported", action.GetPatchType()) + } + return obj, nil +} + +// copyStatusFrom copies the status from old into new +func copyStatusFrom(old, n runtime.Object) error { + oldMapStringAny, err := toMapStringAny(old) + if err != nil { + return fmt.Errorf("failed to convert old to *unstructured.Unstructured: %w", err) + } + newMapStringAny, err := toMapStringAny(n) + if err != nil { + return fmt.Errorf("failed to convert new to *unststructured.Unstructured: %w", err) + } + + newMapStringAny["status"] = oldMapStringAny["status"] + + if err := fromMapStringAny(newMapStringAny, n); err != nil { + return fmt.Errorf("failed to convert back from map[string]any: %w", err) + } + + return nil +} + +// copyFrom copies from old into new +func copyFrom(old, n runtime.Object) error { + oldMapStringAny, err := toMapStringAny(old) + if err != nil { + return fmt.Errorf("failed to convert old to *unstructured.Unstructured: %w", err) + } + if err := fromMapStringAny(oldMapStringAny, n); err != nil { + return fmt.Errorf("failed to convert back from map[string]any: %w", err) + } + + return nil +} + +func toMapStringAny(obj runtime.Object) (map[string]any, error) { + if unstructured, isUnstructured := obj.(*unstructured.Unstructured); isUnstructured { + return unstructured.Object, nil + } + + serialized, err := json.Marshal(obj) + if err != nil { + return nil, err + } + + u := map[string]any{} + return u, json.Unmarshal(serialized, &u) +} + +func fromMapStringAny(u map[string]any, target runtime.Object) error { + if targetUnstructured, isUnstructured := target.(*unstructured.Unstructured); isUnstructured { + targetUnstructured.Object = u + return nil + } + + serialized, err := json.Marshal(u) + if err != nil { + return fmt.Errorf("failed to serialize: %w", err) + } + + zero(target) + if err := json.Unmarshal(serialized, &target); err != nil { + return fmt.Errorf("failed to deserialize: %w", err) + } + + return nil +} + +func (c *fakeClient) Status() client.SubResourceWriter { + return c.SubResource("status") +} + +func (c *fakeClient) SubResource(subResource string) client.SubResourceClient { + return &fakeSubResourceClient{client: c, subResource: subResource} +} + +func (c *fakeClient) deleteObjectLocked(gvr schema.GroupVersionResource, accessor metav1.Object) error { + old, err := c.tracker.Get(gvr, accessor.GetNamespace(), accessor.GetName()) + if err == nil { + oldAccessor, err := meta.Accessor(old) + if err == nil { + if len(oldAccessor.GetFinalizers()) > 0 { + now := metav1.Now() + oldAccessor.SetDeletionTimestamp(&now) + // Call update directly with mutability parameter set to true to allow + // changes to deletionTimestamp + return c.tracker.update(gvr, old, accessor.GetNamespace(), false, true, metav1.UpdateOptions{}) + } + } + } + + // TODO: implement propagation + return c.tracker.Delete(gvr, accessor.GetNamespace(), accessor.GetName()) +} + +func getGVRFromObject(obj runtime.Object, scheme *runtime.Scheme) (schema.GroupVersionResource, error) { + gvk, err := apiutil.GVKForObject(obj, scheme) + if err != nil { + return schema.GroupVersionResource{}, err + } + gvr, _ := meta.UnsafeGuessKindToResource(gvk) + return gvr, nil +} + +type fakeSubResourceClient struct { + client *fakeClient + subResource string +} + +func (sw *fakeSubResourceClient) Get(ctx context.Context, obj, subResource client.Object, opts ...client.SubResourceGetOption) error { + switch sw.subResource { + case subResourceScale: + // Actual client looks up resource, then extracts the scale sub-resource: + // https://github.com/kubernetes/kubernetes/blob/fb6bbc9781d11a87688c398778525c4e1dcb0f08/pkg/registry/apps/deployment/storage/storage.go#L307 + if err := sw.client.Get(ctx, client.ObjectKeyFromObject(obj), obj); err != nil { + return err + } + scale, isScale := subResource.(*autoscalingv1.Scale) + if !isScale { + return apierrors.NewBadRequest(fmt.Sprintf("expected Scale, got %T", subResource)) + } + scaleOut, err := extractScale(obj) + if err != nil { + return err + } + *scale = *scaleOut + return nil + default: + return fmt.Errorf("fakeSubResourceClient does not support get for %s", sw.subResource) + } +} + +func (sw *fakeSubResourceClient) Create(ctx context.Context, obj client.Object, subResource client.Object, opts ...client.SubResourceCreateOption) error { + switch sw.subResource { + case "eviction": + _, isEviction := subResource.(*policyv1beta1.Eviction) + if !isEviction { + _, isEviction = subResource.(*policyv1.Eviction) + } + if !isEviction { + return apierrors.NewBadRequest(fmt.Sprintf("got invalid type %T, expected Eviction", subResource)) + } + if _, isPod := obj.(*corev1.Pod); !isPod { + return apierrors.NewNotFound(schema.GroupResource{}, "") + } + + return sw.client.Delete(ctx, obj) + case "token": + tokenRequest, isTokenRequest := subResource.(*authenticationv1.TokenRequest) + if !isTokenRequest { + return apierrors.NewBadRequest(fmt.Sprintf("got invalid type %T, expected TokenRequest", subResource)) + } + if _, isServiceAccount := obj.(*corev1.ServiceAccount); !isServiceAccount { + return apierrors.NewNotFound(schema.GroupResource{}, "") + } + + tokenRequest.Status.Token = "fake-token" + tokenRequest.Status.ExpirationTimestamp = metav1.Date(6041, 1, 1, 0, 0, 0, 0, time.UTC) + + return sw.client.Get(ctx, client.ObjectKeyFromObject(obj), obj) + default: + return fmt.Errorf("fakeSubResourceWriter does not support create for %s", sw.subResource) + } +} + +func (sw *fakeSubResourceClient) Update(ctx context.Context, obj client.Object, opts ...client.SubResourceUpdateOption) error { + updateOptions := client.SubResourceUpdateOptions{} + updateOptions.ApplyOptions(opts) + + switch sw.subResource { + case subResourceScale: + if err := sw.client.Get(ctx, client.ObjectKeyFromObject(obj), obj.DeepCopyObject().(client.Object)); err != nil { + return err + } + if updateOptions.SubResourceBody == nil { + return apierrors.NewBadRequest("missing SubResourceBody") + } + + scale, isScale := updateOptions.SubResourceBody.(*autoscalingv1.Scale) + if !isScale { + return apierrors.NewBadRequest(fmt.Sprintf("expected Scale, got %T", updateOptions.SubResourceBody)) + } + if err := applyScale(obj, scale); err != nil { + return err + } + return sw.client.update(obj, false, &updateOptions.UpdateOptions) + default: + body := obj + if updateOptions.SubResourceBody != nil { + body = updateOptions.SubResourceBody + } + return sw.client.update(body, true, &updateOptions.UpdateOptions) + } +} + +func (sw *fakeSubResourceClient) Patch(ctx context.Context, obj client.Object, patch client.Patch, opts ...client.SubResourcePatchOption) error { + patchOptions := client.SubResourcePatchOptions{} + patchOptions.ApplyOptions(opts) + + body := obj + if patchOptions.SubResourceBody != nil { + body = patchOptions.SubResourceBody + } + + // this is necessary to identify that last call was made for status patch, through stack trace. + if sw.subResource == "status" { + return sw.statusPatch(body, patch, patchOptions) + } + + return sw.client.patch(body, patch, &patchOptions.PatchOptions) +} + +func (sw *fakeSubResourceClient) statusPatch(body client.Object, patch client.Patch, patchOptions client.SubResourcePatchOptions) error { + return sw.client.patch(body, patch, &patchOptions.PatchOptions) +} + +func allowsUnconditionalUpdate(gvk schema.GroupVersionKind) bool { + switch gvk.Group { + case "apps": + switch gvk.Kind { + case "ControllerRevision", "DaemonSet", "Deployment", "ReplicaSet", "StatefulSet": + return true + } + case "autoscaling": + switch gvk.Kind { + case "HorizontalPodAutoscaler": + return true + } + case "batch": + switch gvk.Kind { + case "CronJob", "Job": + return true + } + case "certificates": + switch gvk.Kind { + case "Certificates": + return true + } + case "flowcontrol": + switch gvk.Kind { + case "FlowSchema", "PriorityLevelConfiguration": + return true + } + case "networking": + switch gvk.Kind { + case "Ingress", "IngressClass", "NetworkPolicy": + return true + } + case "policy": + switch gvk.Kind { + case "PodSecurityPolicy": + return true + } + case "rbac.authorization.k8s.io": + switch gvk.Kind { + case "ClusterRole", "ClusterRoleBinding", "Role", "RoleBinding": + return true + } + case "scheduling": + switch gvk.Kind { + case "PriorityClass": + return true + } + case "settings": + switch gvk.Kind { + case "PodPreset": + return true + } + case "storage": + switch gvk.Kind { + case "StorageClass": + return true + } + case "": + switch gvk.Kind { + case "ConfigMap", "Endpoint", "Event", "LimitRange", "Namespace", "Node", + "PersistentVolume", "PersistentVolumeClaim", "Pod", "PodTemplate", + "ReplicationController", "ResourceQuota", "Secret", "Service", + "ServiceAccount", "EndpointSlice": + return true + } + } + + return false +} + +func allowsCreateOnUpdate(gvk schema.GroupVersionKind) bool { + switch gvk.Group { + case "coordination": + switch gvk.Kind { + case "Lease": + return true + } + case "node": + switch gvk.Kind { + case "RuntimeClass": + return true + } + case "rbac": + switch gvk.Kind { + case "ClusterRole", "ClusterRoleBinding", "Role", "RoleBinding": + return true + } + case "": + switch gvk.Kind { + case "Endpoint", "Event", "LimitRange", "Service": + return true + } + } + + return false +} + +func inTreeResourcesWithStatus() []schema.GroupVersionKind { + return []schema.GroupVersionKind{ + {Version: "v1", Kind: "Namespace"}, + {Version: "v1", Kind: "Node"}, + {Version: "v1", Kind: "PersistentVolumeClaim"}, + {Version: "v1", Kind: "PersistentVolume"}, + {Version: "v1", Kind: "Pod"}, + {Version: "v1", Kind: "ReplicationController"}, + {Version: "v1", Kind: "Service"}, + + {Group: "apps", Version: "v1", Kind: "Deployment"}, + {Group: "apps", Version: "v1", Kind: "DaemonSet"}, + {Group: "apps", Version: "v1", Kind: "ReplicaSet"}, + {Group: "apps", Version: "v1", Kind: "StatefulSet"}, + + {Group: "autoscaling", Version: "v1", Kind: "HorizontalPodAutoscaler"}, + + {Group: "batch", Version: "v1", Kind: "CronJob"}, + {Group: "batch", Version: "v1", Kind: "Job"}, + + {Group: "certificates.k8s.io", Version: "v1", Kind: "CertificateSigningRequest"}, + + {Group: "networking.k8s.io", Version: "v1", Kind: "Ingress"}, + {Group: "networking.k8s.io", Version: "v1", Kind: "NetworkPolicy"}, + + {Group: "policy", Version: "v1", Kind: "PodDisruptionBudget"}, + + {Group: "storage.k8s.io", Version: "v1", Kind: "VolumeAttachment"}, + + {Group: "apiextensions.k8s.io", Version: "v1", Kind: "CustomResourceDefinition"}, + + {Group: "flowcontrol.apiserver.k8s.io", Version: "v1beta2", Kind: "FlowSchema"}, + {Group: "flowcontrol.apiserver.k8s.io", Version: "v1beta2", Kind: "PriorityLevelConfiguration"}, + {Group: "flowcontrol.apiserver.k8s.io", Version: "v1", Kind: "FlowSchema"}, + {Group: "flowcontrol.apiserver.k8s.io", Version: "v1", Kind: "PriorityLevelConfiguration"}, + } +} + +// zero zeros the value of a pointer. +func zero(x interface{}) { + if x == nil { + return + } + res := reflect.ValueOf(x).Elem() + res.Set(reflect.Zero(res.Type())) +} + +// getSingleOrZeroOptions returns the single options value in the slice, its +// zero value if the slice is empty, or an error if the slice contains more than +// one option value. +func getSingleOrZeroOptions[T any](opts []T) (opt T, err error) { + switch len(opts) { + case 0: + case 1: + opt = opts[0] + default: + err = fmt.Errorf("expected single or no options value, got %d values", len(opts)) + } + return +} + +func extractScale(obj client.Object) (*autoscalingv1.Scale, error) { + switch obj := obj.(type) { + case *appsv1.Deployment: + var replicas int32 = 1 + if obj.Spec.Replicas != nil { + replicas = *obj.Spec.Replicas + } + var selector string + if obj.Spec.Selector != nil { + selector = obj.Spec.Selector.String() + } + return &autoscalingv1.Scale{ + ObjectMeta: metav1.ObjectMeta{ + Namespace: obj.Namespace, + Name: obj.Name, + UID: obj.UID, + ResourceVersion: obj.ResourceVersion, + CreationTimestamp: obj.CreationTimestamp, + }, + Spec: autoscalingv1.ScaleSpec{ + Replicas: replicas, + }, + Status: autoscalingv1.ScaleStatus{ + Replicas: obj.Status.Replicas, + Selector: selector, + }, + }, nil + case *appsv1.ReplicaSet: + var replicas int32 = 1 + if obj.Spec.Replicas != nil { + replicas = *obj.Spec.Replicas + } + var selector string + if obj.Spec.Selector != nil { + selector = obj.Spec.Selector.String() + } + return &autoscalingv1.Scale{ + ObjectMeta: metav1.ObjectMeta{ + Namespace: obj.Namespace, + Name: obj.Name, + UID: obj.UID, + ResourceVersion: obj.ResourceVersion, + CreationTimestamp: obj.CreationTimestamp, + }, + Spec: autoscalingv1.ScaleSpec{ + Replicas: replicas, + }, + Status: autoscalingv1.ScaleStatus{ + Replicas: obj.Status.Replicas, + Selector: selector, + }, + }, nil + case *corev1.ReplicationController: + var replicas int32 = 1 + if obj.Spec.Replicas != nil { + replicas = *obj.Spec.Replicas + } + return &autoscalingv1.Scale{ + ObjectMeta: metav1.ObjectMeta{ + Namespace: obj.Namespace, + Name: obj.Name, + UID: obj.UID, + ResourceVersion: obj.ResourceVersion, + CreationTimestamp: obj.CreationTimestamp, + }, + Spec: autoscalingv1.ScaleSpec{ + Replicas: replicas, + }, + Status: autoscalingv1.ScaleStatus{ + Replicas: obj.Status.Replicas, + Selector: labels.Set(obj.Spec.Selector).String(), + }, + }, nil + case *appsv1.StatefulSet: + var replicas int32 = 1 + if obj.Spec.Replicas != nil { + replicas = *obj.Spec.Replicas + } + var selector string + if obj.Spec.Selector != nil { + selector = obj.Spec.Selector.String() + } + return &autoscalingv1.Scale{ + ObjectMeta: metav1.ObjectMeta{ + Namespace: obj.Namespace, + Name: obj.Name, + UID: obj.UID, + ResourceVersion: obj.ResourceVersion, + CreationTimestamp: obj.CreationTimestamp, + }, + Spec: autoscalingv1.ScaleSpec{ + Replicas: replicas, + }, + Status: autoscalingv1.ScaleStatus{ + Replicas: obj.Status.Replicas, + Selector: selector, + }, + }, nil + default: + // TODO: CRDs https://kubernetes.io/docs/tasks/extend-kubernetes/custom-resources/custom-resource-definitions/#scale-subresource + return nil, fmt.Errorf("unimplemented scale subresource for resource %T", obj) + } +} + +func applyScale(obj client.Object, scale *autoscalingv1.Scale) error { + switch obj := obj.(type) { + case *appsv1.Deployment: + obj.Spec.Replicas = ptr.To(scale.Spec.Replicas) + case *appsv1.ReplicaSet: + obj.Spec.Replicas = ptr.To(scale.Spec.Replicas) + case *corev1.ReplicationController: + obj.Spec.Replicas = ptr.To(scale.Spec.Replicas) + case *appsv1.StatefulSet: + obj.Spec.Replicas = ptr.To(scale.Spec.Replicas) + default: + // TODO: CRDs https://kubernetes.io/docs/tasks/extend-kubernetes/custom-resources/custom-resource-definitions/#scale-subresource + return fmt.Errorf("unimplemented scale subresource for resource %T", obj) + } + return nil +} + +// AddIndex adds an index to a fake client. It will panic if used with a client that is not a fake client. +// It will error if there is already an index for given object with the same name as field. +// +// It can be used to test code that adds indexes to the cache at runtime. +func AddIndex(c client.Client, obj runtime.Object, field string, extractValue client.IndexerFunc) error { + fakeClient, isFakeClient := c.(*fakeClient) + if !isFakeClient { + panic("AddIndex can only be used with a fake client") + } + fakeClient.indexesLock.Lock() + defer fakeClient.indexesLock.Unlock() + + if fakeClient.indexes == nil { + fakeClient.indexes = make(map[schema.GroupVersionKind]map[string]client.IndexerFunc, 1) + } + + gvk, err := apiutil.GVKForObject(obj, fakeClient.scheme) + if err != nil { + return fmt.Errorf("failed to get gvk for %T: %w", obj, err) + } + + if fakeClient.indexes[gvk] == nil { + fakeClient.indexes[gvk] = make(map[string]client.IndexerFunc, 1) + } + + if fakeClient.indexes[gvk][field] != nil { + return fmt.Errorf("index %s already exists", field) + } + + fakeClient.indexes[gvk][field] = extractValue + + return nil +} + +func (c *fakeClient) addToSchemeIfUnknownAndUnstructuredOrPartial(obj runtime.Object) error { + c.schemeLock.Lock() + defer c.schemeLock.Unlock() + + _, isUnstructured := obj.(*unstructured.Unstructured) + _, isUnstructuredList := obj.(*unstructured.UnstructuredList) + _, isPartial := obj.(*metav1.PartialObjectMetadata) + _, isPartialList := obj.(*metav1.PartialObjectMetadataList) + if !isUnstructured && !isUnstructuredList && !isPartial && !isPartialList { + return nil + } + + gvk, err := apiutil.GVKForObject(obj, c.scheme) + if err != nil { + return err + } + + if !c.scheme.Recognizes(gvk) { + c.scheme.AddKnownTypeWithName(gvk, obj) + } + + return nil +} + +func ensureTypeMeta(obj runtime.Object, gvk schema.GroupVersionKind) error { + ta, err := meta.TypeAccessor(obj) + if err != nil { + return err + } + _, isUnstructured := obj.(runtime.Unstructured) + _, isPartialObject := obj.(*metav1.PartialObjectMetadata) + _, isPartialObjectList := obj.(*metav1.PartialObjectMetadataList) + if !isUnstructured && !isPartialObject && !isPartialObjectList { + ta.SetKind("") + ta.SetAPIVersion("") + return nil + } + + ta.SetKind(gvk.Kind) + ta.SetAPIVersion(gvk.GroupVersion().String()) + + return nil +} diff --git a/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/doc.go b/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/doc.go new file mode 100644 index 00000000..47cad398 --- /dev/null +++ b/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/doc.go @@ -0,0 +1,38 @@ +/* +Copyright 2018 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +/* +Package fake provides a fake client for testing. + +A fake client is backed by its simple object store indexed by GroupVersionResource. +You can create a fake client with optional objects. + + client := NewClientBuilder().WithScheme(scheme).WithObjects(initObjs...).Build() + +You can invoke the methods defined in the Client interface. + +When in doubt, it's almost always better not to use this package and instead use +envtest.Environment with a real client and API server. + +WARNING: ⚠️ Current Limitations / Known Issues with the fake Client ⚠️ + - This client does not have a way to inject specific errors to test handled vs. unhandled errors. + - There is some support for sub resources which can cause issues with tests if you're trying to update + e.g. metadata and status in the same reconcile. + - No OpenAPI validation is performed when creating or updating objects. + - ObjectMeta's `Generation` and `ResourceVersion` don't behave properly, Patch or Update + operations that rely on these fields will fail, or give false positives. +*/ +package fake diff --git a/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/typeconverter.go b/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/typeconverter.go new file mode 100644 index 00000000..3cb3a0dc --- /dev/null +++ b/vendor/sigs.k8s.io/controller-runtime/pkg/client/fake/typeconverter.go @@ -0,0 +1,60 @@ +/* +Copyright 2025 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package fake + +import ( + "fmt" + + "k8s.io/apimachinery/pkg/runtime" + kerrors "k8s.io/apimachinery/pkg/util/errors" + "k8s.io/apimachinery/pkg/util/managedfields" + "sigs.k8s.io/structured-merge-diff/v6/typed" +) + +type multiTypeConverter struct { + upstream []managedfields.TypeConverter +} + +func (m multiTypeConverter) ObjectToTyped(r runtime.Object, o ...typed.ValidationOptions) (*typed.TypedValue, error) { + var errs []error + for _, u := range m.upstream { + res, err := u.ObjectToTyped(r, o...) + if err != nil { + errs = append(errs, err) + continue + } + + return res, nil + } + + return nil, fmt.Errorf("failed to convert Object to TypedValue: %w", kerrors.NewAggregate(errs)) +} + +func (m multiTypeConverter) TypedToObject(v *typed.TypedValue) (runtime.Object, error) { + var errs []error + for _, u := range m.upstream { + res, err := u.TypedToObject(v) + if err != nil { + errs = append(errs, err) + continue + } + + return res, nil + } + + return nil, fmt.Errorf("failed to convert TypedValue to Object: %w", kerrors.NewAggregate(errs)) +} diff --git a/vendor/sigs.k8s.io/controller-runtime/pkg/client/interceptor/intercept.go b/vendor/sigs.k8s.io/controller-runtime/pkg/client/interceptor/intercept.go new file mode 100644 index 00000000..7ff73bd8 --- /dev/null +++ b/vendor/sigs.k8s.io/controller-runtime/pkg/client/interceptor/intercept.go @@ -0,0 +1,175 @@ +package interceptor + +import ( + "context" + + "k8s.io/apimachinery/pkg/api/meta" + "k8s.io/apimachinery/pkg/runtime" + "k8s.io/apimachinery/pkg/runtime/schema" + "k8s.io/apimachinery/pkg/watch" + "sigs.k8s.io/controller-runtime/pkg/client" +) + +// Funcs contains functions that are called instead of the underlying client's methods. +type Funcs struct { + Get func(ctx context.Context, client client.WithWatch, key client.ObjectKey, obj client.Object, opts ...client.GetOption) error + List func(ctx context.Context, client client.WithWatch, list client.ObjectList, opts ...client.ListOption) error + Create func(ctx context.Context, client client.WithWatch, obj client.Object, opts ...client.CreateOption) error + Delete func(ctx context.Context, client client.WithWatch, obj client.Object, opts ...client.DeleteOption) error + DeleteAllOf func(ctx context.Context, client client.WithWatch, obj client.Object, opts ...client.DeleteAllOfOption) error + Update func(ctx context.Context, client client.WithWatch, obj client.Object, opts ...client.UpdateOption) error + Patch func(ctx context.Context, client client.WithWatch, obj client.Object, patch client.Patch, opts ...client.PatchOption) error + Apply func(ctx context.Context, client client.WithWatch, obj runtime.ApplyConfiguration, opts ...client.ApplyOption) error + Watch func(ctx context.Context, client client.WithWatch, obj client.ObjectList, opts ...client.ListOption) (watch.Interface, error) + SubResource func(client client.WithWatch, subResource string) client.SubResourceClient + SubResourceGet func(ctx context.Context, client client.Client, subResourceName string, obj client.Object, subResource client.Object, opts ...client.SubResourceGetOption) error + SubResourceCreate func(ctx context.Context, client client.Client, subResourceName string, obj client.Object, subResource client.Object, opts ...client.SubResourceCreateOption) error + SubResourceUpdate func(ctx context.Context, client client.Client, subResourceName string, obj client.Object, opts ...client.SubResourceUpdateOption) error + SubResourcePatch func(ctx context.Context, client client.Client, subResourceName string, obj client.Object, patch client.Patch, opts ...client.SubResourcePatchOption) error +} + +// NewClient returns a new interceptor client that calls the functions in funcs instead of the underlying client's methods, if they are not nil. +func NewClient(interceptedClient client.WithWatch, funcs Funcs) client.WithWatch { + return interceptor{ + client: interceptedClient, + funcs: funcs, + } +} + +type interceptor struct { + client client.WithWatch + funcs Funcs +} + +var _ client.WithWatch = &interceptor{} + +func (c interceptor) GroupVersionKindFor(obj runtime.Object) (schema.GroupVersionKind, error) { + return c.client.GroupVersionKindFor(obj) +} + +func (c interceptor) IsObjectNamespaced(obj runtime.Object) (bool, error) { + return c.client.IsObjectNamespaced(obj) +} + +func (c interceptor) Get(ctx context.Context, key client.ObjectKey, obj client.Object, opts ...client.GetOption) error { + if c.funcs.Get != nil { + return c.funcs.Get(ctx, c.client, key, obj, opts...) + } + return c.client.Get(ctx, key, obj, opts...) +} + +func (c interceptor) List(ctx context.Context, list client.ObjectList, opts ...client.ListOption) error { + if c.funcs.List != nil { + return c.funcs.List(ctx, c.client, list, opts...) + } + return c.client.List(ctx, list, opts...) +} + +func (c interceptor) Create(ctx context.Context, obj client.Object, opts ...client.CreateOption) error { + if c.funcs.Create != nil { + return c.funcs.Create(ctx, c.client, obj, opts...) + } + return c.client.Create(ctx, obj, opts...) +} + +func (c interceptor) Delete(ctx context.Context, obj client.Object, opts ...client.DeleteOption) error { + if c.funcs.Delete != nil { + return c.funcs.Delete(ctx, c.client, obj, opts...) + } + return c.client.Delete(ctx, obj, opts...) +} + +func (c interceptor) Update(ctx context.Context, obj client.Object, opts ...client.UpdateOption) error { + if c.funcs.Update != nil { + return c.funcs.Update(ctx, c.client, obj, opts...) + } + return c.client.Update(ctx, obj, opts...) +} + +func (c interceptor) Patch(ctx context.Context, obj client.Object, patch client.Patch, opts ...client.PatchOption) error { + if c.funcs.Patch != nil { + return c.funcs.Patch(ctx, c.client, obj, patch, opts...) + } + return c.client.Patch(ctx, obj, patch, opts...) +} + +func (c interceptor) Apply(ctx context.Context, obj runtime.ApplyConfiguration, opts ...client.ApplyOption) error { + if c.funcs.Apply != nil { + return c.funcs.Apply(ctx, c.client, obj, opts...) + } + + return c.client.Apply(ctx, obj, opts...) +} + +func (c interceptor) DeleteAllOf(ctx context.Context, obj client.Object, opts ...client.DeleteAllOfOption) error { + if c.funcs.DeleteAllOf != nil { + return c.funcs.DeleteAllOf(ctx, c.client, obj, opts...) + } + return c.client.DeleteAllOf(ctx, obj, opts...) +} + +func (c interceptor) Status() client.SubResourceWriter { + return c.SubResource("status") +} + +func (c interceptor) SubResource(subResource string) client.SubResourceClient { + if c.funcs.SubResource != nil { + return c.funcs.SubResource(c.client, subResource) + } + return subResourceInterceptor{ + subResourceName: subResource, + client: c.client, + funcs: c.funcs, + } +} + +func (c interceptor) Scheme() *runtime.Scheme { + return c.client.Scheme() +} + +func (c interceptor) RESTMapper() meta.RESTMapper { + return c.client.RESTMapper() +} + +func (c interceptor) Watch(ctx context.Context, obj client.ObjectList, opts ...client.ListOption) (watch.Interface, error) { + if c.funcs.Watch != nil { + return c.funcs.Watch(ctx, c.client, obj, opts...) + } + return c.client.Watch(ctx, obj, opts...) +} + +type subResourceInterceptor struct { + subResourceName string + client client.Client + funcs Funcs +} + +var _ client.SubResourceClient = &subResourceInterceptor{} + +func (s subResourceInterceptor) Get(ctx context.Context, obj client.Object, subResource client.Object, opts ...client.SubResourceGetOption) error { + if s.funcs.SubResourceGet != nil { + return s.funcs.SubResourceGet(ctx, s.client, s.subResourceName, obj, subResource, opts...) + } + return s.client.SubResource(s.subResourceName).Get(ctx, obj, subResource, opts...) +} + +func (s subResourceInterceptor) Create(ctx context.Context, obj client.Object, subResource client.Object, opts ...client.SubResourceCreateOption) error { + if s.funcs.SubResourceCreate != nil { + return s.funcs.SubResourceCreate(ctx, s.client, s.subResourceName, obj, subResource, opts...) + } + return s.client.SubResource(s.subResourceName).Create(ctx, obj, subResource, opts...) +} + +func (s subResourceInterceptor) Update(ctx context.Context, obj client.Object, opts ...client.SubResourceUpdateOption) error { + if s.funcs.SubResourceUpdate != nil { + return s.funcs.SubResourceUpdate(ctx, s.client, s.subResourceName, obj, opts...) + } + return s.client.SubResource(s.subResourceName).Update(ctx, obj, opts...) +} + +func (s subResourceInterceptor) Patch(ctx context.Context, obj client.Object, patch client.Patch, opts ...client.SubResourcePatchOption) error { + if s.funcs.SubResourcePatch != nil { + return s.funcs.SubResourcePatch(ctx, s.client, s.subResourceName, obj, patch, opts...) + } + return s.client.SubResource(s.subResourceName).Patch(ctx, obj, patch, opts...) +} diff --git a/vendor/sigs.k8s.io/controller-runtime/pkg/internal/objectutil/objectutil.go b/vendor/sigs.k8s.io/controller-runtime/pkg/internal/objectutil/objectutil.go new file mode 100644 index 00000000..0189c043 --- /dev/null +++ b/vendor/sigs.k8s.io/controller-runtime/pkg/internal/objectutil/objectutil.go @@ -0,0 +1,42 @@ +/* +Copyright 2018 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package objectutil + +import ( + apimeta "k8s.io/apimachinery/pkg/api/meta" + "k8s.io/apimachinery/pkg/labels" + "k8s.io/apimachinery/pkg/runtime" +) + +// FilterWithLabels returns a copy of the items in objs matching labelSel. +func FilterWithLabels(objs []runtime.Object, labelSel labels.Selector) ([]runtime.Object, error) { + outItems := make([]runtime.Object, 0, len(objs)) + for _, obj := range objs { + meta, err := apimeta.Accessor(obj) + if err != nil { + return nil, err + } + if labelSel != nil { + lbls := labels.Set(meta.GetLabels()) + if !labelSel.Matches(lbls) { + continue + } + } + outItems = append(outItems, obj.DeepCopyObject()) + } + return outItems, nil +}