Files
mesh-controller/internal/link/retirement.go
T
jochen 3b2adda1c8 Say a mark-only provider's retirement as mark only
A provider that cannot disable keeps the consumer reachable until a person
deletes it (hq ADR 0230); the listing and the approval say so instead of
claiming access was disabled.
2026-10-06 14:41:15 +02:00

249 lines
9.1 KiB
Go

package link
import (
"context"
"encoding/json"
"errors"
"fmt"
"strings"
"time"
"github.com/nats-io/nats.go"
"github.com/novox/mesh-controller/internal/broker"
)
// What becomes of a consumer the mesh stopped asking for (novox/hq ADR 0230).
//
// **A consumer is retired, not withdrawn, and deleted only by a person.** A provider that has seen the
// same consumers go unasked for in five passes disables their access and keeps their data, marked in
// its backend with when and why; asked for again, it enables them as they were. When more would go
// than its bound allows — more than three, or more than half of those it holds — it retires nothing and
// waits for `retire approve` or `retire reject`. A retired consumer is deleted only by `cleanup delete`,
// which the provider executes. Each of these is the provider's `provisioner.retirement` event, its
// `change` saying which; the controller keeps the ones that need a person as conditions.
// The changes a provider says.
const (
RetireWaiting = "waiting"
RetireSettled = "settled"
RetireApproved = "approved"
RetireRejected = "rejected"
RetireRetired = "retired"
RetireReenabled = "reenabled"
RetireDeleted = "deleted"
RetireAdopted = "adopted"
)
// ViaController is what the controller's verbs say they came through, so an act a provider was asked
// for some other way is told apart and recorded by hand.
const ViaController = "mesh-controller"
// RetiredConsumer is one consumer in a retirement word, or in a provider's answer.
type RetiredConsumer struct {
Consumer string `json:"consumer"`
Node string `json:"node,omitempty"`
RetiredAt string `json:"retired_at,omitempty"`
Why string `json:"why,omitempty"`
// SizeBytes is what it keeps on the backend; -1 or absent where the backend cannot say.
SizeBytes *int64 `json:"size_bytes,omitempty"`
// Kind is "consumer", or a backend's own word for something set aside ("set-aside-database").
Kind string `json:"kind,omitempty"`
// Access is "disabled" when the provider disabled it, "kept" for a mark-only provider whose consumer
// keeps its access until a person deletes it (ADR 0230); absent is disabled.
Access string `json:"access,omitempty"`
}
// Retirement is one provider's word about consumers the mesh stopped asking for.
type Retirement struct {
// Module is the emitter, read from the subject the bus let it publish on — never from the body.
Module string `json:"-"`
Provider string `json:"provider"`
ProviderNode string `json:"provider-node"`
Change string `json:"change"`
Consumers []RetiredConsumer `json:"consumers"`
Held int `json:"held"`
Bound string `json:"bound,omitempty"`
Why string `json:"why,omitempty"`
By string `json:"by,omitempty"`
Via string `json:"via,omitempty"`
At time.Time `json:"at"`
Since time.Time `json:"since,omitempty"`
}
// Names are the consumers it names, in its order.
func (r Retirement) Names() []string {
out := make([]string, 0, len(r.Consumers))
for _, c := range r.Consumers {
out = append(out, c.Consumer)
}
return out
}
// Retirements keeps what providers say about consumers they retire.
type Retirements interface {
// Retired records one word. An error the store is away for is held and asked again, like a report.
Retired(ctx context.Context, r Retirement) error
}
// KeepsRetirements says where retirement words are kept, and asks for them to be delivered.
func (s *Server) KeepsRetirements(r Retirements) error {
if err := s.inbound.Also(KindProvisioner); err != nil {
return err
}
s.retirements = r
return nil
}
// IsRetirement says a subject is a provider's retirement word.
func IsRetirement(subject string) bool {
_, ok := ProvisionerEmitter(subject)
return ok && strings.HasSuffix(subject, ".event."+broker.ProvisionerRetirement)
}
// ReadRetirement is one retirement word as the controller understands it.
func ReadRetirement(subject string, body []byte) (Retirement, error) {
module, ok := ProvisionerEmitter(subject)
if !ok || !IsRetirement(subject) {
return Retirement{}, fmt.Errorf("%s is not a provider's retirement word", subject)
}
var r Retirement
if err := json.Unmarshal(body, &r); err != nil {
return Retirement{}, fmt.Errorf("%s's retirement word could not be read: %w", module, err)
}
switch r.Change {
case RetireWaiting, RetireSettled, RetireApproved, RetireRejected, RetireRetired, RetireReenabled,
RetireDeleted, RetireAdopted:
default:
return Retirement{}, fmt.Errorf("%s said a retirement change the mesh has no name for: %q", module, r.Change)
}
if r.ProviderNode == "" {
return Retirement{}, fmt.Errorf("%s's retirement word named no machine", module)
}
r.Module = module
return r, nil
}
// retirement acts on one retirement word. Like a recovery, a word that clears a condition is said
// once, so a store that is away holds the message rather than dropping it.
func (s *Server) retirement(ctx context.Context, m Control) {
if s.retirements == nil {
_ = m.Took()
return
}
r, err := ReadRetirement(m.Subject(), m.Body())
if err != nil {
s.log.Printf("%v; ignored", err)
_ = m.Took()
return
}
err = s.retirements.Retired(ctx, r)
what := fmt.Sprintf("%s's retirement word (%s)", r.Module, r.Change)
switch s.decide(ctx, m, what, "", "", err) {
case Hold:
return
case Stale, GiveUp:
_ = m.Took()
return
}
if err != nil {
s.log.Printf("%s could not be kept: %v", what, err)
} else {
s.log.Printf("%s on %s %s %s", r.Module, r.ProviderNode, r.Change, strings.Join(r.Names(), ", "))
}
_ = m.Took()
}
// The tools every provider serves about its retired consumers (ADR 0230), asked of one machine.
const (
ToolRetirement = "provisioner_retirement"
ToolRetireApprove = "provisioner_retire_approve"
ToolRetireReject = "provisioner_retire_reject"
ToolRetiredDelete = "provisioner_delete"
)
// ErrNothingServes is a tool nothing on that machine serves: the module is not running there, or
// is older than the tool.
var ErrNothingServes = errors.New("nothing serves it")
// ModuleToolOn is where one machine's instance of a module answers a tool: the module's tool subject
// with the machine as its last token — the subject the node tools bind beside the shared one.
func ModuleToolOn(module, tool, node string) string { return ToolSubject(module, tool) + "." + node }
// AskModuleToolOn asks one machine's instance of a module one of its tools and reads its answer.
func AskModuleToolOn(ctx context.Context, conn *nats.Conn, module, tool, node string, args any,
timeout time.Duration) (Answer, error) {
body, err := json.Marshal(args)
if err != nil {
return Answer{}, err
}
asking, cancel := context.WithTimeout(ctx, timeout)
defer cancel()
subject := ModuleToolOn(module, tool, node)
refused, stop := refusalsOf(conn, subject)
defer stop()
type replied struct {
msg *nats.Msg
err error
}
done := make(chan replied, 1)
go func() {
msg, err := conn.RequestWithContext(asking, subject, body)
done <- replied{msg, err}
}()
var reply *nats.Msg
select {
case r := <-done:
reply, err = r.msg, r.err
case why := <-refused:
cancel()
return Answer{}, fmt.Errorf("the bus refused the controller asking %s.%s on %s: %v", module, tool, node, why)
}
switch {
case errors.Is(err, nats.ErrNoResponders):
return Answer{}, fmt.Errorf("%w: %s on %s does not answer %s — it is not running there, or is "+
"older than the tool", ErrNothingServes, module, node, tool)
case errors.Is(err, context.DeadlineExceeded), errors.Is(err, nats.ErrTimeout):
return Answer{}, fmt.Errorf("%s on %s did not answer %s within %s", module, node, tool, timeout)
case err != nil:
return Answer{}, err
}
var answer Answer
if err := json.Unmarshal(reply.Data, &answer); err != nil {
return Answer{}, fmt.Errorf("%s on %s answered %s with something unreadable: %w", module, node, tool, err)
}
return answer, nil
}
// RetirementWaiting is the set a provider waits with for a person.
type RetirementWaiting struct {
Consumers []RetiredConsumer `json:"consumers"`
Since string `json:"since"`
Held int `json:"held"`
}
// RetirementRejected is the set a person's rejection keeps active.
type RetirementRejected struct {
Consumers []RetiredConsumer `json:"consumers"`
By string `json:"by"`
Why string `json:"why"`
At string `json:"at"`
}
// RetirementState is a provider's answer to provisioner_retirement.
type RetirementState struct {
Resource string `json:"resource"`
Node string `json:"node"`
Held []string `json:"held"`
StablePasses int `json:"stable_passes"`
// StableForSeconds is how long the same unasked set must hold as well (ADR 0230: ten minutes).
StableForSeconds int `json:"stable_for_seconds,omitempty"`
// RetiresBy is "disable", or "mark-only" for a provider that cannot disable a consumer.
RetiresBy string `json:"retires_by,omitempty"`
Bound string `json:"bound"`
Waiting *RetirementWaiting `json:"waiting"`
Rejected *RetirementRejected `json:"rejected"`
Retired []RetiredConsumer `json:"retired"`
}