A new 'package' artifact kind builds a module's own code on a public base image and publishes it to the mesh's package registry by version (hq ADR 0076) — the SDK above all, which the toolchain is built from and so cannot be built in the toolchain. The credential a build needs to resolve or publish packages is rendered as an .npmrc (basic auth, hq ADR 0048) and given to an image build as a buildkit secret, never a layer, so a token is not baked into the toolchain image. Claude-Session: https://claude.ai/code/session_01D6qtiYU3P9jk3pnAXyAFyx
196 lines
7.3 KiB
Go
196 lines
7.3 KiB
Go
package catalogue
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import (
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"fmt"
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"sort"
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"strings"
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)
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// Turning a manifest that names artifacts into one that names digests.
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//
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// **Two documents, deliberately.** The manifest in a repository says *this resource uses the
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// archive called `config`*; the manifest the mesh holds says *this resource is sha256:…*. A digest
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// is not knowable until something is built, so a repository carrying one would be a repository
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// whose file is wrong the moment anybody edits anything — and the mesh would be pinning a value
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// nobody could have checked.
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//
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// So the built manifest is **derived**, and the record of which commit it was derived from is what
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// makes "is this current?" answerable without building (novox/hq ADR 0009).
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// Built is one artifact after it exists: where it is and what it hashes to.
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type Built struct {
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// Name is what the manifest called it.
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Name string
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// Kind is "image" or "archive".
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Kind string
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// Reference is what a machine uses to get it — an image reference for an image, a URL for an
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// archive. Both already carry the digest for an image; an archive carries it separately.
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Reference string
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// Digest is "sha256:<hex>", for an archive. An image reference already ends in one.
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Digest string
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}
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// Resolve fills a manifest's resources in from what was built.
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//
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// Every resource naming an artifact is rewritten to name the thing itself, and the `artifact` key
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// is removed — because it is a build-time word and the host has never heard of it. A resource
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// naming an artifact nothing produced is refused: it would otherwise reach a machine with an
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// empty image or an unpinned archive, which is the shape of failure that looks like success.
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func (m Manifest) Resolve(built []Built) (Manifest, error) {
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if m.Build == nil && len(built) == 0 {
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return m, nil
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}
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by := map[string]Built{}
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for _, b := range built {
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by[b.Name] = b
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}
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// Declared and not produced is a build that did not do what the manifest asked, and saying so
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// here beats a machine reporting it later.
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var missing []string
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if m.Build != nil {
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for _, a := range m.Build.Artifacts {
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if _, ok := by[a.Name]; !ok {
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missing = append(missing, a.Name)
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}
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}
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}
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if len(missing) > 0 {
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sort.Strings(missing)
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return Manifest{}, fmt.Errorf(
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"%s says it builds %s and the build did not produce %s — the build did not do what "+
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"the manifest asked, which is a different fault from a resource asking for the "+
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"wrong thing",
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m.Module, strings.Join(missing, " and "), oneOrOther(len(missing)))
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}
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out := m
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out.Build = nil
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out.Resources = nil
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for _, r := range m.Resources {
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named, _ := r["artifact"].(string)
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if named == "" {
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out.Resources = append(out.Resources, r)
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continue
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}
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artifact, ok := by[named]
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if !ok {
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return Manifest{}, fmt.Errorf(
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"%s: %v uses the artifact %q, and this module builds no such thing",
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m.Module, r["id"], named)
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}
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filled := map[string]any{}
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for k, v := range r {
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filled[k] = v
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}
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delete(filled, "artifact")
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switch artifact.Kind {
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case ArtifactPackage:
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// A package is not a resource on any machine; it is consumed by other builds. A
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// resource that names one is a manifest error, named here rather than shipped.
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return Manifest{}, fmt.Errorf(
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"%s: %v uses %q, which is a package — a build input, not a resource a machine runs",
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m.Module, r["id"], named)
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case ArtifactImage, ArtifactUpstream:
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filled["image"] = artifact.Reference
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case ArtifactArchive, ArtifactBundle:
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// The same on the wire: both are bytes fetched by digest and unpacked. They differ in
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// how they were made — one packed as it stood, the other compiled first — and a
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// machine has no reason to care which.
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filled["source"] = artifact.Reference
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filled["digest"] = artifact.Digest
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default:
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return Manifest{}, fmt.Errorf("%s: %q is a %q, and an artifact is %q, %q, %q or %q",
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m.Module, named, artifact.Kind, ArtifactImage, ArtifactArchive, ArtifactUpstream,
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ArtifactBundle)
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}
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out.Resources = append(out.Resources, filled)
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}
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return out, nil
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}
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// checkBuild is the manifest's own account of what it builds.
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func (b *Build) problems(module string) []string {
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if b == nil {
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return nil
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}
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var problems []string
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seen := map[string]bool{}
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for _, a := range b.Artifacts {
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if a.Name == "" {
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problems = append(problems, module+" builds an artifact with no name")
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continue
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}
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if seen[a.Name] {
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problems = append(problems, fmt.Sprintf(
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"%s builds two artifacts called %q, and a resource naming it could mean either",
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module, a.Name))
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}
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seen[a.Name] = true
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switch a.Kind {
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case ArtifactImage, ArtifactArchive, ArtifactUpstream, ArtifactBundle, ArtifactPackage:
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default:
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problems = append(problems, fmt.Sprintf(
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"%s: %q is a %q, and an artifact is %q, %q, %q or %q",
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module, a.Name, a.Kind, ArtifactImage, ArtifactArchive, ArtifactUpstream,
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ArtifactBundle+", "+ArtifactPackage))
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}
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// **A bundle is built from the module itself, so it says a language instead.** Everything
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// else names what it is built from: a Dockerfile, a directory, somebody else's reference.
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// A bundle's source is the module's own directory by definition, and what it needs to say
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// is which compiler — because the mesh chooses that, and cannot choose for a module that
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// has not said.
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if a.Kind == ArtifactBundle || a.Kind == ArtifactPackage {
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if a.From != "" {
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problems = append(problems, fmt.Sprintf(
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"%s: %q is a bundle and names what it is built from (%q). A bundle is built "+
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"from the module's own directory; what it says is the language",
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module, a.Name, a.From))
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}
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if strings.TrimSpace(a.Language) == "" {
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problems = append(problems, fmt.Sprintf(
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"%s: %q is a bundle and says no language, so nothing can choose a compiler "+
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"for it", module, a.Name))
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}
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} else {
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if a.From == "" {
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problems = append(problems, fmt.Sprintf(
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"%s: %q says nothing about what it is built from", module, a.Name))
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}
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if a.Language != "" {
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problems = append(problems, fmt.Sprintf(
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"%s: %q is a %q and names a language. Only a bundle is compiled by the mesh; "+
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"everything else brings its own recipe", module, a.Name, a.Kind))
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}
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}
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// An upstream image is named, not read from the repository, so the path rule does not
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// apply to it — and applying it anyway would refuse every reference with a registry host
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// in it.
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if a.Kind != ArtifactUpstream &&
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(strings.HasPrefix(a.From, "/") || strings.Contains(a.From, "..")) {
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// A build reads its own repository and nothing else. A path leaving it would make
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// what gets built depend on whatever happens to be on the machine building it.
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problems = append(problems, fmt.Sprintf(
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"%s: %q is built from %q, which is outside its own repository",
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module, a.Name, a.From))
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}
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if a.Kind == ArtifactUpstream && !strings.Contains(a.From, ":") {
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// Without a tag or digest, what gets mirrored is whatever `latest` means today, and
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// a module pinned to that is not pinned.
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problems = append(problems, fmt.Sprintf(
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"%s: %q mirrors %q, which names no tag or digest", module, a.Name, a.From))
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}
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}
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return problems
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}
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// oneOrOther keeps the message readable for one artifact and for several, because a message that
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// says "neither" about one thing reads as a bug in the message.
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func oneOrOther(n int) string {
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if n == 1 {
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return "it"
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}
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return "them"
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}
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