One store, and it is the registry the bootstrap already pulls from. An OCI registry is a content-addressed blob store that also understands images: PUT a blob and it is retrievable at /v2/<name>/blobs/sha256:… for ever, by digest. An archive is a content-addressed blob. A second store beside it was considered and is the right answer for objects that are mutable, need per-reader access, or are not build output — somebody's uploads, a backup, a thing with a lifecycle. None of that describes a digest-pinned archive, and running a second service to hold one kind of immutable blob is two things to run, two to back up, and two ways for an artifact to be missing. Overturnable by reading: the manifest carries a URL and a digest, and neither says what served it. `build <repository>` clones, reads module.json, builds what it declares, publishes, and records the manifest with the commit it came from. It is a command rather than something the control plane does on its own, because building runs things on a machine and what the control plane may send a machine is bounded by the declaration language. This is the shape the builder module takes when it is given work over the broker. Proven end to end on a real repository and a real registry: a shell module with a package, a user and a dotfile archive built, published, fetched back at the digest it declared, rebuilt to the same digest, and its manifest accepted by the host's own parser — including `user` and `archive`, which did not exist this morning. A tag is never accepted as a pin, and a blob already stored is not sent again — it is named by its content, so re-uploading asks the registry to store what it already has under the name it already has.
152 lines
5.6 KiB
Go
152 lines
5.6 KiB
Go
package builder
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import (
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"bytes"
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"context"
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"fmt"
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"io"
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"net/http"
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"strings"
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)
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// Where built artifacts go.
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//
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// **One store, and it is the registry the bootstrap already pulls from.** An OCI registry is a
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// content-addressed blob store that happens to also understand images: `PUT` a blob and it is
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// retrievable at `/v2/<name>/blobs/sha256:…` for ever, by digest, over plain HTTP. An archive is
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// a content-addressed blob. So it goes there.
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//
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// The alternative considered was a second store beside it — S3-shaped, buckets, signed URLs. It
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// is the right answer for objects that are *mutable*, or need per-reader access, or are not build
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// output: somebody's uploads, a backup, a thing with a lifecycle. None of that describes a
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// digest-pinned archive, and standing up a second service to hold one kind of immutable blob
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// means two things to run, two things to back up and two ways for an artifact to be missing.
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//
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// **This is a decision that can be overturned by reading**: if something needs an object store
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// for reasons other than build artifacts, it should have one, and archives can move to it without
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// anything else changing — the manifest carries a URL and a digest, and neither says what served
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// it.
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// Registry publishes to an OCI registry over plain HTTP.
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//
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// Plain HTTP because the registry the mesh runs is reached over the private network, which is
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// already the encrypted, authenticated thing. A second layer inside it would be certificates to
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// issue and rotate for no property the first does not have.
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type Registry struct {
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// Address is host:port, as a machine will fetch from.
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Address string
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// Run is how docker is invoked, so a test does not need one.
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Run Runner
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// HTTP is the client used for blobs.
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HTTP *http.Client
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}
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// PublishImage pushes a locally built image and returns a reference pinned by digest.
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//
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// The digest is read back from the registry's own answer rather than computed here. What matters
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// is what the registry will serve for that reference, and only it can say.
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func (r Registry) PublishImage(ctx context.Context, localTag, repository string) (string, error) {
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remote := r.Address + "/" + repository
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if _, err := r.Run(ctx, "", "docker", "tag", localTag, remote); err != nil {
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return "", err
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}
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if _, err := r.Run(ctx, "", "docker", "push", remote); err != nil {
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return "", err
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}
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out, err := r.Run(ctx, "", "docker", "inspect", "--format", "{{index .RepoDigests 0}}", remote)
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if err != nil {
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return "", fmt.Errorf("pushed %s and cannot read back what it was pinned as: %w", remote, err)
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}
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pinned := strings.TrimSpace(out)
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if !strings.Contains(pinned, "@sha256:") {
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// A tag is not a pin. It can be made to point at something else, and this file is applied
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// on machines with no mesh to ask about anything (novox/hq ADR 0006).
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return "", fmt.Errorf("%s came back as %q, which is not pinned by digest", remote, pinned)
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}
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return pinned, nil
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}
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// PublishArchive stores bytes as a blob and returns where to fetch them from.
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//
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// Two steps, which is the registry's own protocol: ask for somewhere to put it, then put it there
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// naming the digest. The registry verifies the digest itself, so a blob that arrived corrupted is
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// refused by the thing storing it rather than by the machine unpacking it a week later.
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func (r Registry) PublishArchive(ctx context.Context, repository string, body []byte, digest string) (string, error) {
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base := "http://" + r.Address + "/v2/" + repository
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final := base + "/blobs/" + digest
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// Already there. Blobs are immutable and named by their content, so this is not an
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// optimisation — re-uploading would be asking the registry to store what it already has under
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// the name it already has.
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if there, err := r.has(ctx, final); err != nil {
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return "", err
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} else if there {
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return final, nil
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}
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start, err := http.NewRequestWithContext(ctx, http.MethodPost, base+"/blobs/uploads/", nil)
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if err != nil {
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return "", err
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}
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begun, err := r.client().Do(start)
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if err != nil {
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return "", fmt.Errorf("cannot start an upload to %s: %w", base, err)
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}
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defer begun.Body.Close()
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if begun.StatusCode != http.StatusAccepted {
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return "", fmt.Errorf("%s answered %s when asked where to put a blob", base, begun.Status)
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}
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where := begun.Header.Get("Location")
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if where == "" {
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return "", fmt.Errorf("%s accepted an upload and said nowhere to put it", base)
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}
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if strings.HasPrefix(where, "/") {
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where = "http://" + r.Address + where
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}
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put, err := http.NewRequestWithContext(ctx, http.MethodPut,
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where+separator(where)+"digest="+digest, bytes.NewReader(body))
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if err != nil {
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return "", err
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}
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put.Header.Set("Content-Type", "application/octet-stream")
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done, err := r.client().Do(put)
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if err != nil {
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return "", err
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}
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defer done.Body.Close()
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if done.StatusCode != http.StatusCreated {
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said, _ := io.ReadAll(io.LimitReader(done.Body, 4096))
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return "", fmt.Errorf("%s refused the blob: %s %s", base, done.Status, strings.TrimSpace(string(said)))
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}
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return final, nil
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}
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func (r Registry) has(ctx context.Context, url string) (bool, error) {
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request, err := http.NewRequestWithContext(ctx, http.MethodHead, url, nil)
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if err != nil {
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return false, err
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}
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response, err := r.client().Do(request)
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if err != nil {
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return false, fmt.Errorf("cannot reach the registry at %s: %w", r.Address, err)
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}
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defer response.Body.Close()
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return response.StatusCode == http.StatusOK, nil
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}
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func (r Registry) client() *http.Client {
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if r.HTTP != nil {
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return r.HTTP
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}
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return http.DefaultClient
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}
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// separator is whether the upload location already carries a query.
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func separator(where string) string {
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if strings.Contains(where, "?") {
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return "&"
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}
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return "?"
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}
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