fluid-core/cmd/fluid/commands.go
tegwick 03ff7a8ad7
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Add control APIs, control-plane binary, and close the CLI gate bypass
Completes FLUID-WP-0004. The Revision and Intent APIs (Blueprint 44.1
and 44.5) are served by fluid-control, which is deliberately off the
request path and must never be reachable by interface consumers: it is
the mechanism that evolves the interface in response to their behaviour.

Intent amendment is a proposal, never an edit. Rewriting a recorded
version returns 409, because changing what a version says would change
what already-published revisions were governed by.

A rejected candidate comes back as 422 with its full stage report rather
than as a server fault. Rejection is a normal outcome (invariant 14) and
the reasons are the evidence a later hypothesis needs.

Also closes a real hole this workplan opened: `fluid revision publish`
previously wrote straight into the evidence store, which was a way
around the deterministic policy gate for anyone with shell access. It
now runs the same pipeline the control plane does and requires a signing
key.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_014KmVxhJ35tCo7rE7UnLwWu

Assistant: claude-code
Assistant-Model: opus
Assistant-Process: 1116572@bnt-lap001
Assistant-Session: 8ba9bb93-a72a-4883-b189-2499cce5c400
2026-09-04 03:00:17 +02:00

594 lines
16 KiB
Go

package main
import (
"context"
"crypto/ed25519"
"encoding/base64"
"encoding/json"
"errors"
"fmt"
"os"
"sort"
"strings"
"text/tabwriter"
"time"
"gopkg.in/yaml.v3"
_ "modernc.org/sqlite"
"github.com/tegwick/fluid-core/internal/contract"
"github.com/tegwick/fluid-core/internal/evidence"
"github.com/tegwick/fluid-core/internal/intent"
"github.com/tegwick/fluid-core/internal/policy"
"github.com/tegwick/fluid-core/internal/publish"
"github.com/tegwick/fluid-core/internal/signing"
)
// open connects to the evidence store for this invocation.
func (g globals) open(ctx context.Context) (*evidence.SQLStore, error) {
return evidence.OpenSQLite(ctx, g.storePath())
}
func out() *tabwriter.Writer {
return tabwriter.NewWriter(os.Stdout, 0, 4, 2, ' ', 0)
}
// ---------- intent ----------
func runIntent(ctx context.Context, g globals, args []string) error {
if len(args) == 0 {
return errors.New("intent needs a subcommand: put, activate, show")
}
iface, err := g.requireInterface()
if err != nil {
return err
}
store, err := g.open(ctx)
if err != nil {
return err
}
defer store.Close()
is := intent.New(store, contract.InterfaceID(iface))
switch args[0] {
case "put":
fs := newFlagSet("intent put")
version := fs.String("version", "", "intent version label, such as IEI-1")
file := fs.String("file", "", "path to the InterfaceEvolutionIntent document")
activate := fs.Bool("activate", false, "make this version the governing intent")
if err := fs.Parse(args[1:]); err != nil {
return err
}
if *version == "" || *file == "" {
return errors.New("intent put needs --version and --file")
}
doc, err := os.ReadFile(*file)
if err != nil {
return err
}
v, err := is.Put(ctx, *version, string(doc))
if err != nil {
return err
}
fmt.Printf("recorded %s\n digest %s\n mode %s\n", v.Version, v.Digest, v.Mode)
if *activate {
if err := is.SetActive(ctx, v.Version); err != nil {
return err
}
fmt.Printf(" active yes\n")
}
return nil
case "activate":
if len(args) < 2 {
return errors.New("intent activate needs a version")
}
if err := is.SetActive(ctx, args[1]); err != nil {
return err
}
fmt.Printf("%s is now the governing intent\n", args[1])
return nil
case "show":
var v intent.Version
if len(args) > 1 {
v, err = is.Get(ctx, args[1])
} else {
v, err = is.Active(ctx)
}
if err != nil {
return err
}
fmt.Printf("version %s\ndigest %s\nmode %s\nrecorded %s\n\n",
v.Version, v.Digest, v.Mode, v.RecordedAt.Format(time.RFC3339))
fmt.Println(v.Document)
return nil
default:
return fmt.Errorf("unknown intent subcommand %q", args[0])
}
}
// ---------- revision ----------
func runRevision(ctx context.Context, g globals, args []string) error {
if len(args) == 0 {
return errors.New("revision needs a subcommand: publish, list, show")
}
iface, err := g.requireInterface()
if err != nil {
return err
}
store, err := g.open(ctx)
if err != nil {
return err
}
defer store.Close()
switch args[0] {
case "publish":
fs := newFlagSet("revision publish")
file := fs.String("file", "", "path to the revision descriptor (YAML or JSON)")
keyFile := fs.String("key-file", os.Getenv("FLUID_SIGNING_KEY"), "base64 ed25519 signing key file")
keyID := fs.String("key-id", envOr("FLUID_SIGNING_KEY_ID", "dev"), "signing key identifier")
ephemeral := fs.Bool("ephemeral-key", false, "sign with a throwaway key (development only)")
classes := fs.String("adaptation-classes", "", "comma-separated adaptation classes")
complexity := fs.Float64("complexity-delta", 0, "measured complexity impact")
share := fs.Float64("traffic-share", 0, "requested traffic share")
approvedBy := fs.String("approved-by", "", "authorizing operator; required by the default gate")
if err := fs.Parse(args[1:]); err != nil {
return err
}
if *file == "" {
return errors.New("revision publish needs --file")
}
raw, err := os.ReadFile(*file)
if err != nil {
return err
}
var doc contract.RevisionDescriptorDocument
if err := yaml.Unmarshal(raw, &doc); err != nil {
return fmt.Errorf("parse descriptor: %w", err)
}
d := doc.Revision
if string(d.Interface) != iface {
return fmt.Errorf("descriptor is for interface %q, but --interface is %q", d.Interface, iface)
}
if d.ID == "" {
return errors.New("descriptor has no revision id")
}
// Publishing goes through the same pipeline the control plane uses.
// A CLI that could write a revision straight into the store would be a
// way around the deterministic policy gate, which would make the gate
// decorative for anyone with shell access.
signer, err := loadSigner(*keyID, *keyFile, *ephemeral)
if err != nil {
return err
}
intents := intent.New(store, contract.InterfaceID(iface))
pipeline, err := publish.New(publish.Options{
Gate: policy.NewGate(policy.DefaultLimits()),
Signer: signer,
Store: store,
Intents: intents,
})
if err != nil {
return err
}
var approver *contract.Actor
if *approvedBy != "" {
approver = &contract.Actor{Type: contract.ActorTypeHuman, ID: *approvedBy}
}
candidate := publish.NewCandidate(d, contract.Actor{
Type: contract.ActorTypeHuman, ID: operator(),
})
verified, report, err := pipeline.Run(ctx, candidate, publish.PromotionRequest{
AdaptationClasses: parseClasses(*classes),
ComplexityDelta: *complexity,
RequestedTrafficShare: *share,
Approved: approver != nil,
ApprovedBy: approver,
})
if err != nil {
printReport(report)
return err
}
if err := pipeline.Publish(ctx, verified); err != nil {
return err
}
printReport(report)
fmt.Printf("\npublished %s (%s), governed by %s, signed by %s\n",
d.ID, d.State, d.Intent.Version, verified.Descriptor().Signature.KeyID)
return nil
case "list":
records, err := store.Records(ctx, contract.KindRevision)
if err != nil {
return err
}
if len(records) == 0 {
fmt.Println("no revisions published")
return nil
}
ids := make([]string, 0, len(records))
for id := range records {
ids = append(ids, id)
}
sort.Strings(ids)
w := out()
fmt.Fprintln(w, "REVISION\tSTATE\tINTENT\tCOMPATIBILITY\tUPSTREAM")
for _, id := range ids {
var d contract.Revision
if err := json.Unmarshal(records[id], &d); err != nil {
fmt.Fprintf(w, "%s\t(unreadable)\t\t\t\n", id)
continue
}
fmt.Fprintf(w, "%s\t%s\t%s\t%s\t%s\n",
d.ID, d.State, d.Intent.Version, d.Policy.Compatibility, d.Runtime.Upstream)
}
return w.Flush()
case "show":
if len(args) < 2 {
return errors.New("revision show needs a revision id")
}
body, err := store.Record(ctx, contract.KindRevision, args[1])
if err != nil {
return err
}
var pretty any
_ = json.Unmarshal(body, &pretty)
enc := json.NewEncoder(os.Stdout)
enc.SetIndent("", " ")
return enc.Encode(pretty)
default:
return fmt.Errorf("unknown revision subcommand %q", args[0])
}
}
// ---------- policy ----------
const policyRecordID = "__routing_policy__"
func runPolicy(ctx context.Context, g globals, args []string) error {
if len(args) == 0 {
return errors.New("policy needs a subcommand: put, show")
}
iface, err := g.requireInterface()
if err != nil {
return err
}
store, err := g.open(ctx)
if err != nil {
return err
}
defer store.Close()
switch args[0] {
case "put":
fs := newFlagSet("policy put")
file := fs.String("file", "", "path to the routing policy")
if err := fs.Parse(args[1:]); err != nil {
return err
}
if *file == "" {
return errors.New("policy put needs --file")
}
raw, err := os.ReadFile(*file)
if err != nil {
return err
}
var doc contract.RoutingPolicyDocument
if err := yaml.Unmarshal(raw, &doc); err != nil {
return fmt.Errorf("parse policy: %w", err)
}
p := doc.RoutingPolicy
if string(p.Interface) != iface {
return fmt.Errorf("policy is for interface %q, but --interface is %q", p.Interface, iface)
}
// Generations are monotonic in the registry; catching a regression here
// avoids shipping a policy the gateway will silently refuse.
if existing, err := store.Record(ctx, contract.KindRoutingPolicy, policyRecordID); err == nil {
var prev contract.RoutingPolicy
if json.Unmarshal(existing, &prev) == nil && p.Generation <= prev.Generation {
return fmt.Errorf("policy generation %d is not newer than the installed %d",
p.Generation, prev.Generation)
}
}
body, err := json.Marshal(p)
if err != nil {
return err
}
if err := store.PutRecord(ctx, contract.KindRoutingPolicy, policyRecordID, body); err != nil {
return err
}
if err := store.AppendEvent(ctx, contract.FluidEvent{
SchemaVersion: "0.1",
ID: contract.EventID(fmt.Sprintf("EV-policy-%d", time.Now().UnixNano())),
OccurredAt: time.Now().UTC(),
EntityType: contract.FluidEventEntityTypeRoutingPolicy,
EntityID: fmt.Sprintf("generation-%d", p.Generation),
EventType: "ROUTING_POLICY_INSTALLED",
Actor: contract.Actor{Type: contract.ActorTypeHuman, ID: operator()},
Reason: fmt.Sprintf("default %s, %d rule(s)", p.DefaultRevision, len(p.Rules)),
}); err != nil {
return err
}
fmt.Printf("installed routing policy generation %d (default %s, %d rules)\n",
p.Generation, p.DefaultRevision, len(p.Rules))
return nil
case "show":
body, err := store.Record(ctx, contract.KindRoutingPolicy, policyRecordID)
if err != nil {
if errors.Is(err, evidence.ErrNotFound) {
fmt.Println("no routing policy installed")
return nil
}
return err
}
var pretty any
_ = json.Unmarshal(body, &pretty)
enc := json.NewEncoder(os.Stdout)
enc.SetIndent("", " ")
return enc.Encode(pretty)
default:
return fmt.Errorf("unknown policy subcommand %q", args[0])
}
}
// ---------- events and telemetry ----------
func runEvents(ctx context.Context, g globals, args []string) error {
fs := newFlagSet("events")
entity := fs.String("entity", "", "filter by entity id, such as R-1")
kind := fs.String("type", "", "filter by event type")
limit := fs.Int("limit", 50, "maximum events to show")
if err := fs.Parse(args); err != nil {
return err
}
store, err := g.open(ctx)
if err != nil {
return err
}
defer store.Close()
events, err := store.Events(ctx, evidence.EventFilter{
EntityID: *entity,
EventType: *kind,
Limit: *limit,
})
if err != nil {
return err
}
if len(events) == 0 {
fmt.Println("no events")
return nil
}
w := out()
fmt.Fprintln(w, "WHEN\tENTITY\tTYPE\tACTOR\tREASON")
for _, ev := range events {
fmt.Fprintf(w, "%s\t%s %s\t%s\t%s:%s\t%s\n",
ev.OccurredAt.Format(time.RFC3339), ev.EntityType, ev.EntityID,
ev.EventType, ev.Actor.Type, ev.Actor.ID, oneLine(ev.Reason))
}
return w.Flush()
}
func runTelemetry(ctx context.Context, g globals, args []string) error {
fs := newFlagSet("telemetry")
revision := fs.String("revision", "", "filter by revision")
kind := fs.String("kind", "", "filter by event kind")
limit := fs.Int("limit", 50, "maximum rows to show")
if err := fs.Parse(args); err != nil {
return err
}
store, err := g.open(ctx)
if err != nil {
return err
}
defer store.Close()
rows, err := store.Telemetry(ctx, evidence.TelemetryFilter{
InterfaceID: contract.InterfaceID(g.iface),
Revision: contract.RevisionID(*revision),
Kind: contract.FluidTelemetryKind(*kind),
Limit: *limit,
})
if err != nil {
return err
}
if len(rows) == 0 {
fmt.Println("no telemetry")
return nil
}
w := out()
fmt.Fprintln(w, "WHEN\tKIND\tREVISION\tRESOLVED BY\tROUTE\tSTATUS")
for _, ev := range rows {
route, status := "", ""
if ev.Request != nil {
route = ev.Request.Route
if ev.Request.Status != nil {
status = fmt.Sprint(*ev.Request.Status)
}
}
reason := ""
if ev.Resolution != nil {
reason = string(ev.Resolution.Reason)
}
fmt.Fprintf(w, "%s\t%s\t%s\t%s\t%s\t%s\n",
ev.OccurredAt.Format(time.RFC3339), ev.Kind, deref(ev.Revision), reason, route, status)
}
return w.Flush()
}
// ---------- audit ----------
// runAudit reconstructs the chain behind a revision.
//
// This is the command that has to answer the eleven questions in
// FluidAPIStandards.md section 25. It is deliberately built from events rather
// than from summary records: the records say what is true now, the events say
// how it came to be.
func runAudit(ctx context.Context, g globals, args []string) error {
if len(args) < 2 || args[0] != "trace" {
return errors.New("usage: fluid audit trace <revision>")
}
target := args[1]
iface, err := g.requireInterface()
if err != nil {
return err
}
store, err := g.open(ctx)
if err != nil {
return err
}
defer store.Close()
events, err := store.Events(ctx, evidence.EventFilter{EntityID: target})
if err != nil {
return err
}
if len(events) == 0 {
return fmt.Errorf("no history recorded for %s", target)
}
fmt.Printf("Audit trace for %s\n\n", target)
is := intent.New(store, contract.InterfaceID(iface))
if v, err := is.GoverningIntent(ctx, contract.RevisionID(target)); err == nil {
fmt.Printf("Governed by %s (%s), authority mode %s\n\n", v.Version, v.Digest, v.Mode)
} else {
fmt.Printf("Governed by: UNKNOWN — no intent binding recorded\n\n")
}
w := out()
fmt.Fprintln(w, "WHEN\tEVENT\tACTOR\tINPUTS\tREASON")
for _, ev := range events {
fmt.Fprintf(w, "%s\t%s\t%s:%s\t%s\t%s\n",
ev.OccurredAt.Format(time.RFC3339), ev.EventType,
ev.Actor.Type, ev.Actor.ID,
strings.Join(ev.Inputs, ","), oneLine(ev.Reason))
}
if err := w.Flush(); err != nil {
return err
}
count, err := store.Telemetry(ctx, evidence.TelemetryFilter{Revision: contract.RevisionID(target)})
if err == nil {
fmt.Printf("\n%d telemetry event(s) recorded against %s\n", len(count), target)
}
return nil
}
// ---------- helpers ----------
func newFlagSet(name string) *flagSet { return &flagSet{fs: newStdFlagSet(name)} }
func oneLine(s string) string {
return strings.Join(strings.Fields(s), " ")
}
func deref(s *contract.RevisionID) string {
if s == nil {
return ""
}
return string(*s)
}
func operator() string {
if v := os.Getenv("FLUID_OPERATOR"); v != "" {
return v
}
if v := os.Getenv("USER"); v != "" {
return v
}
return "unknown"
}
// parseClasses splits a comma-separated adaptation class list.
func parseClasses(s string) []contract.AdaptationClass {
if strings.TrimSpace(s) == "" {
return nil
}
var out []contract.AdaptationClass
for _, part := range strings.Split(s, ",") {
if p := strings.TrimSpace(part); p != "" {
out = append(out, contract.AdaptationClass(p))
}
}
return out
}
// printReport renders the pipeline outcome stage by stage, so a rejection says
// which gate refused and why rather than only that it failed.
func printReport(r publish.Report) {
if len(r.Stages) == 0 {
return
}
w := out()
fmt.Fprintln(w, "STAGE\tRESULT\tDETAIL")
for _, s := range r.Stages {
verdict := "pass"
if !s.Passed {
verdict = "FAIL"
}
fmt.Fprintf(w, "%s\t%s\t%s\n", s.Stage, verdict, oneLine(s.Detail))
}
_ = w.Flush()
}
// loadSigner resolves the signing key for a publish.
//
// An ephemeral key must be requested explicitly: signing with a key nobody
// trusts produces revisions the router will refuse, and finding that out at
// publish time is far better than at traffic time.
func loadSigner(keyID, keyFile string, ephemeral bool) (*signing.Signer, error) {
if keyFile != "" {
raw, err := os.ReadFile(keyFile)
if err != nil {
return nil, fmt.Errorf("read signing key: %w", err)
}
decoded, err := base64.StdEncoding.DecodeString(strings.TrimSpace(string(raw)))
if err != nil {
return nil, fmt.Errorf("signing key is not valid base64: %w", err)
}
return signing.NewSigner(keyID, ed25519.PrivateKey(decoded))
}
if ephemeral {
signer, _, err := signing.GenerateKey(keyID)
if err != nil {
return nil, err
}
fmt.Fprintln(os.Stderr,
"warning: signing with an ephemeral key; this revision will not verify after the key is gone")
return signer, nil
}
return nil, errors.New("no signing key: pass --key-file, or --ephemeral-key for development")
}