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package main
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import (
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"bytes"
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"errors"
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"fmt"
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"log"
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"regexp"
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"sort"
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"github.com/technosophos/moniker"
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ctx "golang.org/x/net/context"
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"k8s.io/helm/cmd/tiller/environment"
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"k8s.io/helm/pkg/proto/hapi/release"
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"k8s.io/helm/pkg/proto/hapi/services"
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"k8s.io/helm/pkg/storage"
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"k8s.io/helm/pkg/timeconv"
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)
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var srv *releaseServer
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func init() {
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srv = &releaseServer{
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env: env,
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}
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srv.env.Namespace = namespace
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services.RegisterReleaseServiceServer(rootServer, srv)
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}
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type releaseServer struct {
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env *environment.Environment
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}
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var (
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// errNotImplemented is a temporary error for uninmplemented callbacks.
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errNotImplemented = errors.New("not implemented")
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// errMissingChart indicates that a chart was not provided.
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errMissingChart = errors.New("no chart provided")
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// errMissingRelease indicates that a release (name) was not provided.
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errMissingRelease = errors.New("no release provided")
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)
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// ListDefaultLimit is the default limit for number of items returned in a list.
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var ListDefaultLimit int64 = 512
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func (s *releaseServer) ListReleases(req *services.ListReleasesRequest, stream services.ReleaseService_ListReleasesServer) error {
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rels, err := s.env.Releases.List()
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if err != nil {
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return err
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}
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if len(req.Filter) != 0 {
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rels, err = filterReleases(req.Filter, rels)
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if err != nil {
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return err
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}
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}
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total := int64(len(rels))
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switch req.SortBy {
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case services.ListSort_NAME:
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sort.Sort(byName(rels))
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case services.ListSort_LAST_RELEASED:
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sort.Sort(byDate(rels))
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}
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if req.SortOrder == services.ListSort_DESC {
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ll := len(rels)
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rr := make([]*release.Release, ll)
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for i, item := range rels {
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rr[ll-i-1] = item
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}
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rels = rr
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}
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l := int64(len(rels))
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if req.Offset != "" {
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i := -1
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for ii, cur := range rels {
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if cur.Name == req.Offset {
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i = ii
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}
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}
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if i == -1 {
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return fmt.Errorf("offset %q not found", req.Offset)
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}
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if len(rels) < i {
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return fmt.Errorf("no items after %q", req.Offset)
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}
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rels = rels[i:]
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l = int64(len(rels))
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}
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if req.Limit == 0 {
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req.Limit = ListDefaultLimit
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}
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next := ""
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if l > req.Limit {
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next = rels[req.Limit].Name
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rels = rels[0:req.Limit]
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l = int64(len(rels))
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}
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res := &services.ListReleasesResponse{
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Next: next,
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Count: l,
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Total: total,
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Releases: rels,
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}
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stream.Send(res)
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return nil
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}
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func filterReleases(filter string, rels []*release.Release) ([]*release.Release, error) {
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preg, err := regexp.Compile(filter)
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if err != nil {
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return rels, err
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}
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matches := []*release.Release{}
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for _, r := range rels {
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if preg.MatchString(r.Name) {
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matches = append(matches, r)
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}
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}
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return matches, nil
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}
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func (s *releaseServer) GetReleaseStatus(c ctx.Context, req *services.GetReleaseStatusRequest) (*services.GetReleaseStatusResponse, error) {
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if req.Name == "" {
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return nil, errMissingRelease
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}
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rel, err := s.env.Releases.Read(req.Name)
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if err != nil {
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return nil, err
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}
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if rel.Info == nil {
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return nil, errors.New("release info is missing")
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}
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return &services.GetReleaseStatusResponse{Info: rel.Info}, nil
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}
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func (s *releaseServer) GetReleaseContent(c ctx.Context, req *services.GetReleaseContentRequest) (*services.GetReleaseContentResponse, error) {
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if req.Name == "" {
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return nil, errMissingRelease
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}
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rel, err := s.env.Releases.Read(req.Name)
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return &services.GetReleaseContentResponse{Release: rel}, err
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}
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func (s *releaseServer) UpdateRelease(c ctx.Context, req *services.UpdateReleaseRequest) (*services.UpdateReleaseResponse, error) {
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return nil, errNotImplemented
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}
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func (s *releaseServer) uniqName(start string) (string, error) {
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// If a name is supplied, we check to see if that name is taken. Right now,
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// we fail if it is already taken. We could instead fall-thru and allow
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// an automatically generated name, but this seems to violate the principle
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// of least surprise.
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if start != "" {
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if _, err := s.env.Releases.Read(start); err == storage.ErrNotFound {
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return start, nil
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}
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return "", fmt.Errorf("a release named %q already exists", start)
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}
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maxTries := 5
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for i := 0; i < maxTries; i++ {
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namer := moniker.New()
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name := namer.NameSep("-")
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if _, err := s.env.Releases.Read(name); err == storage.ErrNotFound {
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return name, nil
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}
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log.Printf("info: Name %q is taken. Searching again.", name)
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}
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log.Printf("warning: No available release names found after %d tries", maxTries)
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return "ERROR", errors.New("no available release name found")
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}
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func (s *releaseServer) InstallRelease(c ctx.Context, req *services.InstallReleaseRequest) (*services.InstallReleaseResponse, error) {
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if req.Chart == nil {
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return nil, errMissingChart
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}
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ts := timeconv.Now()
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name, err := s.uniqName(req.Name)
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if err != nil {
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return nil, err
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}
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overrides := map[string]interface{}{
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"Release": map[string]interface{}{
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"Name": name,
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"Time": ts,
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"Namespace": s.env.Namespace,
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"Service": "Tiller",
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},
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"Chart": req.Chart.Metadata,
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}
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// Render the templates
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// TODO: Fix based on whether chart has `engine: SOMETHING` set.
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files, err := s.env.EngineYard.Default().Render(req.Chart, req.Values, overrides)
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if err != nil {
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return nil, err
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}
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b := bytes.NewBuffer(nil)
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for name, file := range files {
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// Ignore empty documents because the Kubernetes library can't handle
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// them.
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if len(file) > 0 {
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b.WriteString("\n---\n# Source: " + name + "\n")
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b.WriteString(file)
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}
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}
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// Store a release.
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r := &release.Release{
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Name: name,
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Chart: req.Chart,
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Config: req.Values,
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Info: &release.Info{
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FirstDeployed: ts,
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LastDeployed: ts,
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Status: &release.Status{Code: release.Status_UNKNOWN},
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},
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Manifest: b.String(),
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}
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res := &services.InstallReleaseResponse{Release: r}
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if req.DryRun {
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log.Printf("Dry run for %s", name)
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return res, nil
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}
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if err := s.env.KubeClient.Create(s.env.Namespace, b); err != nil {
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r.Info.Status.Code = release.Status_FAILED
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log.Printf("warning: Release %q failed: %s", name, err)
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return res, fmt.Errorf("release %s failed: %s", name, err)
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}
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// This is a tricky case. The release has been created, but the result
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// cannot be recorded. The truest thing to tell the user is that the
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// release was created. However, the user will not be able to do anything
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// further with this release.
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//
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// One possible strategy would be to do a timed retry to see if we can get
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// this stored in the future.
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if err := s.env.Releases.Create(r); err != nil {
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log.Printf("warning: Failed to record release %q: %s", name, err)
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}
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return res, nil
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}
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func (s *releaseServer) UninstallRelease(c ctx.Context, req *services.UninstallReleaseRequest) (*services.UninstallReleaseResponse, error) {
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if req.Name == "" {
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log.Printf("uninstall: Release not found: %s", req.Name)
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return nil, errMissingRelease
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}
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rel, err := s.env.Releases.Read(req.Name)
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if err != nil {
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log.Printf("uninstall: Release not loaded: %s", req.Name)
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return nil, err
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}
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log.Printf("uninstall: Deleting %s", req.Name)
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rel.Info.Status.Code = release.Status_DELETED
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rel.Info.Deleted = timeconv.Now()
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b := bytes.NewBuffer([]byte(rel.Manifest))
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if err := s.env.KubeClient.Delete(s.env.Namespace, b); err != nil {
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log.Printf("uninstall: Failed deletion of %q: %s", req.Name, err)
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return nil, err
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}
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if err := s.env.Releases.Update(rel); err != nil {
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log.Printf("uninstall: Failed to store updated release: %s", err)
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}
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res := services.UninstallReleaseResponse{Release: rel}
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return &res, nil
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}
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// byName implements the sort.Interface for []*release.Release.
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type byName []*release.Release
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func (r byName) Len() int {
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return len(r)
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}
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func (r byName) Swap(p, q int) {
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r[p], r[q] = r[q], r[p]
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}
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func (r byName) Less(i, j int) bool {
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return r[i].Name < r[j].Name
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}
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type byDate []*release.Release
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func (r byDate) Len() int { return len(r) }
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func (r byDate) Swap(p, q int) {
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r[p], r[q] = r[q], r[p]
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}
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func (r byDate) Less(p, q int) bool {
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return r[p].Info.LastDeployed.Seconds < r[q].Info.LastDeployed.Seconds
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}
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