本文整理汇总了Golang中k8s/io/kubernetes/pkg/api/rest.Storage类的典型用法代码示例。如果您正苦于以下问题:Golang Storage类的具体用法?Golang Storage怎么用?Golang Storage使用的例子?那么恭喜您, 这里精选的类代码示例或许可以为您提供帮助。
在下文中一共展示了Storage类的2个代码示例,这些例子默认根据受欢迎程度排序。您可以为喜欢或者感觉有用的代码点赞,您的评价将有助于系统推荐出更棒的Golang代码示例。
示例1: getResourceKind
// getResourceKind returns the external group version kind registered for the given storage
// object. If the storage object is a subresource and has an override supplied for it, it returns
// the group version kind supplied in the override.
func (a *APIInstaller) getResourceKind(path string, storage rest.Storage) (unversioned.GroupVersionKind, error) {
if fqKindToRegister, ok := a.group.SubresourceGroupVersionKind[path]; ok {
return fqKindToRegister, nil
}
object := storage.New()
fqKinds, err := a.group.Typer.ObjectKinds(object)
if err != nil {
return unversioned.GroupVersionKind{}, err
}
// a given go type can have multiple potential fully qualified kinds. Find the one that corresponds with the group
// we're trying to register here
fqKindToRegister := unversioned.GroupVersionKind{}
for _, fqKind := range fqKinds {
if fqKind.Group == a.group.GroupVersion.Group {
fqKindToRegister = a.group.GroupVersion.WithKind(fqKind.Kind)
break
}
// TODO This keeps it doing what it was doing before, but it doesn't feel right.
if fqKind.Group == extensions.GroupName && fqKind.Kind == "ThirdPartyResourceData" {
fqKindToRegister = a.group.GroupVersion.WithKind(fqKind.Kind)
}
}
if fqKindToRegister.IsEmpty() {
return unversioned.GroupVersionKind{}, fmt.Errorf("unable to locate fully qualified kind for %v: found %v when registering for %v", reflect.TypeOf(object), fqKinds, a.group.GroupVersion)
}
return fqKindToRegister, nil
}
示例2: registerResourceHandlers
func (a *APIInstaller) registerResourceHandlers(path string, storage rest.Storage, ws *restful.WebService, proxyHandler http.Handler) (*unversioned.APIResource, error) {
admit := a.group.Admit
context := a.group.Context
optionsExternalVersion := a.group.GroupVersion
if a.group.OptionsExternalVersion != nil {
optionsExternalVersion = *a.group.OptionsExternalVersion
}
var resource, subresource string
switch parts := strings.Split(path, "/"); len(parts) {
case 2:
resource, subresource = parts[0], parts[1]
case 1:
resource = parts[0]
default:
// TODO: support deeper paths
return nil, fmt.Errorf("api_installer allows only one or two segment paths (resource or resource/subresource)")
}
hasSubresource := len(subresource) > 0
object := storage.New()
fqKinds, err := a.group.Typer.ObjectKinds(object)
if err != nil {
return nil, err
}
// a given go type can have multiple potential fully qualified kinds. Find the one that corresponds with the group
// we're trying to register here
fqKindToRegister := unversioned.GroupVersionKind{}
for _, fqKind := range fqKinds {
if fqKind.Group == a.group.GroupVersion.Group {
fqKindToRegister = fqKind
break
}
// TODO This keeps it doing what it was doing before, but it doesn't feel right.
if fqKind.Group == extensions.GroupName && fqKind.Kind == "ThirdPartyResourceData" {
fqKindToRegister = fqKind
fqKindToRegister.Group = a.group.GroupVersion.Group
fqKindToRegister.Version = a.group.GroupVersion.Version
}
}
if fqKindToRegister.IsEmpty() {
return nil, fmt.Errorf("unable to locate fully qualified kind for %v: found %v when registering for %v", reflect.TypeOf(object), fqKinds, a.group.GroupVersion)
}
kind := fqKindToRegister.Kind
versionedPtr, err := a.group.Creater.New(a.group.GroupVersion.WithKind(kind))
if err != nil {
return nil, err
}
versionedObject := indirectArbitraryPointer(versionedPtr)
mapping, err := a.group.Mapper.RESTMapping(fqKindToRegister.GroupKind(), a.group.GroupVersion.Version)
if err != nil {
return nil, err
}
// subresources must have parent resources, and follow the namespacing rules of their parent
if hasSubresource {
parentStorage, ok := a.group.Storage[resource]
if !ok {
return nil, fmt.Errorf("subresources can only be declared when the parent is also registered: %s needs %s", path, resource)
}
parentObject := parentStorage.New()
parentFQKinds, err := a.group.Typer.ObjectKinds(parentObject)
if err != nil {
return nil, err
}
// a given go type can have multiple potential fully qualified kinds. Find the one that corresponds with the group
// we're trying to register here
parentFQKindToRegister := unversioned.GroupVersionKind{}
for _, fqKind := range parentFQKinds {
if fqKind.Group == a.group.GroupVersion.Group {
parentFQKindToRegister = fqKind
break
}
}
if parentFQKindToRegister.IsEmpty() {
return nil, fmt.Errorf("unable to locate fully qualified kind for %v: found %v when registering for %v", reflect.TypeOf(object), fqKinds, a.group.GroupVersion)
}
parentMapping, err := a.group.Mapper.RESTMapping(parentFQKindToRegister.GroupKind(), a.group.GroupVersion.Version)
if err != nil {
return nil, err
}
mapping.Scope = parentMapping.Scope
}
// what verbs are supported by the storage, used to know what verbs we support per path
creater, isCreater := storage.(rest.Creater)
namedCreater, isNamedCreater := storage.(rest.NamedCreater)
lister, isLister := storage.(rest.Lister)
getter, isGetter := storage.(rest.Getter)
getterWithOptions, isGetterWithOptions := storage.(rest.GetterWithOptions)
deleter, isDeleter := storage.(rest.Deleter)
gracefulDeleter, isGracefulDeleter := storage.(rest.GracefulDeleter)
collectionDeleter, isCollectionDeleter := storage.(rest.CollectionDeleter)
//.........这里部分代码省略.........