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	Adding objects that have TypeMeta (use runtime.Scheme) but do not expose ObjectMeta/ListMeta (because they are not Kube API objects) and wanted to get the simpler access path for in memory objects.
		
			
				
	
	
		
			389 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			389 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
/*
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Copyright 2014 Google Inc. All rights reserved.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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    http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package runtime
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import (
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	"fmt"
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	"reflect"
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	"github.com/GoogleCloudPlatform/kubernetes/pkg/conversion"
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)
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// Scheme defines methods for serializing and deserializing API objects. It
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// is an adaptation of conversion's Scheme for our API objects.
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type Scheme struct {
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	raw *conversion.Scheme
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}
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// fromScope gets the input version, desired output version, and desired Scheme
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// from a conversion.Scope.
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func (self *Scheme) fromScope(s conversion.Scope) (inVersion, outVersion string, scheme *Scheme) {
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	scheme = self
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	inVersion = s.Meta().SrcVersion
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	outVersion = s.Meta().DestVersion
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	return inVersion, outVersion, scheme
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}
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// emptyPlugin is used to copy the Kind field to and from plugin objects.
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type emptyPlugin struct {
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	PluginBase `json:",inline"`
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}
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// embeddedObjectToRawExtension does the conversion you would expect from the name, using the information
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// given in conversion.Scope. It's placed in the DefaultScheme as a ConversionFunc to enable plugins;
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// see the comment for RawExtension.
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func (self *Scheme) embeddedObjectToRawExtension(in *EmbeddedObject, out *RawExtension, s conversion.Scope) error {
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	if in.Object == nil {
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		out.RawJSON = []byte("null")
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		return nil
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	}
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	// Figure out the type and kind of the output object.
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	_, outVersion, scheme := self.fromScope(s)
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	_, kind, err := scheme.raw.ObjectVersionAndKind(in.Object)
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	if err != nil {
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		return err
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	}
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	// Manufacture an object of this type and kind.
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	outObj, err := scheme.New(outVersion, kind)
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	if err != nil {
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		return err
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	}
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	// Manually do the conversion.
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	err = s.Convert(in.Object, outObj, 0)
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	if err != nil {
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		return err
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	}
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	// Copy the kind field into the ouput object.
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	err = s.Convert(
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		&emptyPlugin{PluginBase: PluginBase{Kind: kind}},
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		outObj,
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		conversion.SourceToDest|conversion.IgnoreMissingFields|conversion.AllowDifferentFieldTypeNames,
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	)
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	if err != nil {
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		return err
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	}
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	// Because we provide the correct version, EncodeToVersion will not attempt a conversion.
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	raw, err := scheme.EncodeToVersion(outObj, outVersion)
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	if err != nil {
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		// TODO: if this fails, create an Unknown-- maybe some other
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		// component will understand it.
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		return err
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	}
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	out.RawJSON = raw
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	return nil
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}
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// rawExtensionToEmbeddedObject does the conversion you would expect from the name, using the information
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// given in conversion.Scope. It's placed in all schemes as a ConversionFunc to enable plugins;
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// see the comment for RawExtension.
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func (self *Scheme) rawExtensionToEmbeddedObject(in *RawExtension, out *EmbeddedObject, s conversion.Scope) error {
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	if len(in.RawJSON) == 4 && string(in.RawJSON) == "null" {
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		out.Object = nil
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		return nil
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	}
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	// Figure out the type and kind of the output object.
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	inVersion, outVersion, scheme := self.fromScope(s)
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	_, kind, err := scheme.raw.DataVersionAndKind(in.RawJSON)
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	if err != nil {
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		return err
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	}
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	// We have to make this object ourselves because we don't store the version field for
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	// plugin objects.
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	inObj, err := scheme.New(inVersion, kind)
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	if err != nil {
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		return err
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	}
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	err = scheme.DecodeInto(in.RawJSON, inObj)
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	if err != nil {
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		return err
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	}
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	// Make the desired internal version, and do the conversion.
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	outObj, err := scheme.New(outVersion, kind)
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	if err != nil {
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		return err
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	}
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	err = scheme.Convert(inObj, outObj)
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	if err != nil {
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		return err
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	}
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	// Last step, clear the Kind field; that should always be blank in memory.
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	err = s.Convert(
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		&emptyPlugin{PluginBase: PluginBase{Kind: ""}},
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		outObj,
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		conversion.SourceToDest|conversion.IgnoreMissingFields|conversion.AllowDifferentFieldTypeNames,
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	)
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	if err != nil {
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		return err
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	}
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	out.Object = outObj
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	return nil
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}
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// runtimeObjectToRawExtensionArray takes a list of objects and encodes them as RawExtension in the output version
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// defined by the conversion.Scope. If objects must be encoded to different schema versions you should set them as
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// runtime.Unknown in the internal version instead.
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func (self *Scheme) runtimeObjectToRawExtensionArray(in *[]Object, out *[]RawExtension, s conversion.Scope) error {
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	src := *in
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	dest := make([]RawExtension, len(src))
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	_, outVersion, scheme := self.fromScope(s)
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	for i := range src {
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		switch t := src[i].(type) {
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		case *Unknown:
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			dest[i].RawJSON = t.RawJSON
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		default:
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			data, err := scheme.EncodeToVersion(src[i], outVersion)
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			if err != nil {
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				return err
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			}
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			dest[i].RawJSON = data
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		}
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	}
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	*out = dest
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	return nil
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}
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// rawExtensionToRuntimeObjectArray attempts to decode objects from the array - if they are unrecognized objects,
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// they are added as Unknown.
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func (self *Scheme) rawExtensionToRuntimeObjectArray(in *[]RawExtension, out *[]Object, s conversion.Scope) error {
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	src := *in
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	dest := make([]Object, len(src))
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	_, _, scheme := self.fromScope(s)
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	for i := range src {
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		data := src[i].RawJSON
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		obj, err := scheme.Decode(data)
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		if err != nil {
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			if !IsNotRegisteredError(err) {
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				return err
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			}
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			version, kind, err := scheme.raw.DataVersionAndKind(data)
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			if err != nil {
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				return err
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			}
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			obj = &Unknown{
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				TypeMeta: TypeMeta{
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					APIVersion: version,
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					Kind:       kind,
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				},
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				RawJSON: data,
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			}
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		}
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		dest[i] = obj
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	}
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	*out = dest
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	return nil
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}
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// NewScheme creates a new Scheme. This scheme is pluggable by default.
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func NewScheme() *Scheme {
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	s := &Scheme{conversion.NewScheme()}
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	s.raw.InternalVersion = ""
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	s.raw.MetaFactory = conversion.SimpleMetaFactory{BaseFields: []string{"TypeMeta"}, VersionField: "APIVersion", KindField: "Kind"}
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	if err := s.raw.AddConversionFuncs(
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		s.embeddedObjectToRawExtension,
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		s.rawExtensionToEmbeddedObject,
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		s.runtimeObjectToRawExtensionArray,
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		s.rawExtensionToRuntimeObjectArray,
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	); err != nil {
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		panic(err)
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	}
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	return s
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}
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// AddKnownTypes registers the types of the arguments to the marshaller of the package api.
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// Encode() refuses the object unless its type is registered with AddKnownTypes.
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func (s *Scheme) AddKnownTypes(version string, types ...Object) {
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	interfaces := make([]interface{}, len(types))
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	for i := range types {
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		interfaces[i] = types[i]
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	}
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	s.raw.AddKnownTypes(version, interfaces...)
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}
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// AddKnownTypeWithName is like AddKnownTypes, but it lets you specify what this type should
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// be encoded as. Useful for testing when you don't want to make multiple packages to define
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// your structs.
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func (s *Scheme) AddKnownTypeWithName(version, kind string, obj Object) {
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	s.raw.AddKnownTypeWithName(version, kind, obj)
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}
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// KnownTypes returns the types known for the given version.
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// Return value must be treated as read-only.
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func (s *Scheme) KnownTypes(version string) map[string]reflect.Type {
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	return s.raw.KnownTypes(version)
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}
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// DataVersionAndKind will return the APIVersion and Kind of the given wire-format
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// encoding of an API Object, or an error.
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func (s *Scheme) DataVersionAndKind(data []byte) (version, kind string, err error) {
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	return s.raw.DataVersionAndKind(data)
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}
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// ObjectVersionAndKind returns the version and kind of the given Object.
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func (s *Scheme) ObjectVersionAndKind(obj Object) (version, kind string, err error) {
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	return s.raw.ObjectVersionAndKind(obj)
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}
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// New returns a new API object of the given version ("" for internal
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// representation) and name, or an error if it hasn't been registered.
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func (s *Scheme) New(versionName, typeName string) (Object, error) {
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	obj, err := s.raw.NewObject(versionName, typeName)
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	if err != nil {
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		return nil, err
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	}
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	return obj.(Object), nil
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}
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// Log sets a logger on the scheme. For test purposes only
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func (s *Scheme) Log(l conversion.DebugLogger) {
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	s.raw.Log(l)
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}
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// AddConversionFuncs adds a function to the list of conversion functions. The given
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// function should know how to convert between two API objects. We deduce how to call
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// it from the types of its two parameters; see the comment for Converter.Register.
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//
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// Note that, if you need to copy sub-objects that didn't change, it's safe to call
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// Convert() inside your conversionFuncs, as long as you don't start a conversion
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// chain that's infinitely recursive.
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//
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// Also note that the default behavior, if you don't add a conversion function, is to
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// sanely copy fields that have the same names. It's OK if the destination type has
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// extra fields, but it must not remove any. So you only need to add a conversion
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// function for things with changed/removed fields.
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func (s *Scheme) AddConversionFuncs(conversionFuncs ...interface{}) error {
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	return s.raw.AddConversionFuncs(conversionFuncs...)
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}
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// AddStructFieldConversion allows you to specify a mechanical copy for a moved
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// or renamed struct field without writing an entire conversion function. See
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// the comment in conversion.Converter.SetStructFieldCopy for parameter details.
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// Call as many times as needed, even on the same fields.
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func (s *Scheme) AddStructFieldConversion(srcFieldType interface{}, srcFieldName string, destFieldType interface{}, destFieldName string) error {
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	return s.raw.AddStructFieldConversion(srcFieldType, srcFieldName, destFieldType, destFieldName)
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}
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// Convert will attempt to convert in into out. Both must be pointers.
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// For easy testing of conversion functions. Returns an error if the conversion isn't
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// possible.
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func (s *Scheme) Convert(in, out interface{}) error {
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	return s.raw.Convert(in, out)
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}
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// ConvertToVersion attempts to convert an input object to its matching Kind in another
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// version within this scheme. Will return an error if the provided version does not
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// contain the inKind (or a mapping by name defined with AddKnownTypeWithName). Will also
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// return an error if the conversion does not result in a valid Object being
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// returned.
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func (s *Scheme) ConvertToVersion(in Object, outVersion string) (Object, error) {
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	unknown, err := s.raw.ConvertToVersion(in, outVersion)
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	if err != nil {
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		return nil, err
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	}
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	obj, ok := unknown.(Object)
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	if !ok {
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		return nil, fmt.Errorf("the provided object cannot be converted to a runtime.Object: %#v", unknown)
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	}
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	return obj, nil
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}
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// EncodeToVersion turns the given api object into an appropriate JSON string.
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// Will return an error if the object doesn't have an embedded TypeMeta.
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// Obj may be a pointer to a struct, or a struct. If a struct, a copy
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// must be made. If a pointer, the object may be modified before encoding,
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// but will be put back into its original state before returning.
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//
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// Memory/wire format differences:
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//  * Having to keep track of the Kind and APIVersion fields makes tests
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//    very annoying, so the rule is that they are set only in wire format
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//    (json), not when in native (memory) format. This is possible because
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//    both pieces of information are implicit in the go typed object.
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//     * An exception: note that, if there are embedded API objects of known
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//       type, for example, PodList{... Items []Pod ...}, these embedded
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//       objects must be of the same version of the object they are embedded
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//       within, and their APIVersion and Kind must both be empty.
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//     * Note that the exception does not apply to the APIObject type, which
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//       recursively does Encode()/Decode(), and is capable of expressing any
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//       API object.
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//  * Only versioned objects should be encoded. This means that, if you pass
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//    a native object, Encode will convert it to a versioned object. For
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//    example, an api.Pod will get converted to a v1beta1.Pod. However, if
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//    you pass in an object that's already versioned (v1beta1.Pod), Encode
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//    will not modify it.
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//
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// The purpose of the above complex conversion behavior is to allow us to
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// change the memory format yet not break compatibility with any stored
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// objects, whether they be in our storage layer (e.g., etcd), or in user's
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// config files.
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func (s *Scheme) EncodeToVersion(obj Object, destVersion string) (data []byte, err error) {
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	return s.raw.EncodeToVersion(obj, destVersion)
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}
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// Decode converts a YAML or JSON string back into a pointer to an api object.
 | 
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// Deduces the type based upon the APIVersion and Kind fields, which are set
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// by Encode. Only versioned objects (APIVersion != "") are accepted. The object
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// will be converted into the in-memory unversioned type before being returned.
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func (s *Scheme) Decode(data []byte) (Object, error) {
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	obj, err := s.raw.Decode(data)
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						|
	if err != nil {
 | 
						|
		return nil, err
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						|
	}
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	return obj.(Object), nil
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						|
}
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						|
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// DecodeInto parses a YAML or JSON string and stores it in obj. Returns an error
 | 
						|
// if data.Kind is set and doesn't match the type of obj. Obj should be a
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						|
// pointer to an api type.
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// If obj's APIVersion doesn't match that in data, an attempt will be made to convert
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						|
// data into obj's version.
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						|
// TODO: allow Decode/DecodeInto to take a default apiVersion and a default kind, to
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// be applied if the provided object does not have either field (integrate external
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// apis into the decoding scheme).
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func (s *Scheme) DecodeInto(data []byte, obj Object) error {
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						|
	return s.raw.DecodeInto(data, obj)
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						|
}
 | 
						|
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						|
// Copy does a deep copy of an API object.  Useful mostly for tests.
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						|
// TODO(dbsmith): implement directly instead of via Encode/Decode
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						|
// TODO(claytonc): Copy cannot be used for objects which do not encode type information, such
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// as lists of runtime.Objects
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						|
func (s *Scheme) Copy(obj Object) (Object, error) {
 | 
						|
	data, err := s.EncodeToVersion(obj, "")
 | 
						|
	if err != nil {
 | 
						|
		return nil, err
 | 
						|
	}
 | 
						|
	return s.Decode(data)
 | 
						|
}
 | 
						|
 | 
						|
func (s *Scheme) CopyOrDie(obj Object) Object {
 | 
						|
	newObj, err := s.Copy(obj)
 | 
						|
	if err != nil {
 | 
						|
		panic(err)
 | 
						|
	}
 | 
						|
	return newObj
 | 
						|
}
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