* Add Virtual Kubelet provider for VIC Initial virtual kubelet provider for VMware VIC. This provider currently handles creating and starting of a pod VM via the VIC portlayer and persona server. Image store handling via the VIC persona server. This provider currently requires the feature/wolfpack branch of VIC. * Added pod stop and delete. Also added node capacity. Added the ability to stop and delete pod VMs via VIC. Also retrieve node capacity information from the VCH. * Cleanup and readme file Some file clean up and added a Readme.md markdown file for the VIC provider. * Cleaned up errors, added function comments, moved operation code 1. Cleaned up error handling. Set standard for creating errors. 2. Added method prototype comments for all interface functions. 3. Moved PodCreator, PodStarter, PodStopper, and PodDeleter to a new folder. * Add mocking code and unit tests for podcache, podcreator, and podstarter Used the unit test framework used in VIC to handle assertions in the provider's unit test. Mocking code generated using OSS project mockery, which is compatible with the testify assertion framework. * Vendored packages for the VIC provider Requires feature/wolfpack branch of VIC and a few specific commit sha of projects used within VIC. * Implementation of POD Stopper and Deleter unit tests (#4) * Updated files for initial PR
151 lines
4.4 KiB
Go
151 lines
4.4 KiB
Go
package image
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import (
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"encoding/json"
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"errors"
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"io"
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"time"
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"github.com/docker/distribution/digest"
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"github.com/docker/docker/api/types/container"
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)
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// ID is the content-addressable ID of an image.
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type ID digest.Digest
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func (id ID) String() string {
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return id.Digest().String()
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}
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// Digest converts ID into a digest
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func (id ID) Digest() digest.Digest {
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return digest.Digest(id)
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}
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// IDFromDigest creates an ID from a digest
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func IDFromDigest(digest digest.Digest) ID {
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return ID(digest)
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}
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// V1Image stores the V1 image configuration.
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type V1Image struct {
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// ID a unique 64 character identifier of the image
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ID string `json:"id,omitempty"`
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// Parent id of the image
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Parent string `json:"parent,omitempty"`
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// Comment user added comment
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Comment string `json:"comment,omitempty"`
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// Created timestamp when image was created
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Created time.Time `json:"created"`
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// Container is the id of the container used to commit
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Container string `json:"container,omitempty"`
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// ContainerConfig is the configuration of the container that is committed into the image
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ContainerConfig container.Config `json:"container_config,omitempty"`
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// DockerVersion specifies version on which image is built
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DockerVersion string `json:"docker_version,omitempty"`
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// Author of the image
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Author string `json:"author,omitempty"`
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// Config is the configuration of the container received from the client
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Config *container.Config `json:"config,omitempty"`
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// Architecture is the hardware that the image is build and runs on
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Architecture string `json:"architecture,omitempty"`
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// OS is the operating system used to build and run the image
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OS string `json:"os,omitempty"`
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// Size is the total size of the image including all layers it is composed of
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Size int64 `json:",omitempty"`
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}
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// Image stores the image configuration
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type Image struct {
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V1Image
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Parent ID `json:"parent,omitempty"`
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RootFS *RootFS `json:"rootfs,omitempty"`
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History []History `json:"history,omitempty"`
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OSVersion string `json:"os.version,omitempty"`
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OSFeatures []string `json:"os.features,omitempty"`
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// rawJSON caches the immutable JSON associated with this image.
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rawJSON []byte
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// computedID is the ID computed from the hash of the image config.
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// Not to be confused with the legacy V1 ID in V1Image.
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computedID ID
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}
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// RawJSON returns the immutable JSON associated with the image.
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func (img *Image) RawJSON() []byte {
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return img.rawJSON
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}
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// ID returns the image's content-addressable ID.
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func (img *Image) ID() ID {
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return img.computedID
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}
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// ImageID stringifies ID.
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func (img *Image) ImageID() string {
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return img.ID().String()
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}
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// RunConfig returns the image's container config.
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func (img *Image) RunConfig() *container.Config {
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return img.Config
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}
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// MarshalJSON serializes the image to JSON. It sorts the top-level keys so
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// that JSON that's been manipulated by a push/pull cycle with a legacy
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// registry won't end up with a different key order.
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func (img *Image) MarshalJSON() ([]byte, error) {
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type MarshalImage Image
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pass1, err := json.Marshal(MarshalImage(*img))
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if err != nil {
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return nil, err
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}
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var c map[string]*json.RawMessage
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if err := json.Unmarshal(pass1, &c); err != nil {
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return nil, err
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}
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return json.Marshal(c)
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}
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// History stores build commands that were used to create an image
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type History struct {
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// Created timestamp for build point
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Created time.Time `json:"created"`
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// Author of the build point
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Author string `json:"author,omitempty"`
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// CreatedBy keeps the Dockerfile command used while building image.
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CreatedBy string `json:"created_by,omitempty"`
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// Comment is custom message set by the user when creating the image.
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Comment string `json:"comment,omitempty"`
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// EmptyLayer is set to true if this history item did not generate a
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// layer. Otherwise, the history item is associated with the next
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// layer in the RootFS section.
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EmptyLayer bool `json:"empty_layer,omitempty"`
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}
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// Exporter provides interface for exporting and importing images
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type Exporter interface {
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Load(io.ReadCloser, io.Writer, bool) error
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// TODO: Load(net.Context, io.ReadCloser, <- chan StatusMessage) error
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Save([]string, io.Writer) error
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}
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// NewFromJSON creates an Image configuration from json.
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func NewFromJSON(src []byte) (*Image, error) {
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img := &Image{}
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if err := json.Unmarshal(src, img); err != nil {
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return nil, err
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}
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if img.RootFS == nil {
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return nil, errors.New("Invalid image JSON, no RootFS key.")
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}
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img.rawJSON = src
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return img, nil
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}
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