A host reaches either bus, and a genesis template that raises the mesh on the new one #33

Merged
jschoubben merged 5 commits from feat/nats-genesis into main 2026-09-27 17:36:48 +00:00
7 changed files with 545 additions and 114 deletions
Showing only changes of commit 9072f60a30 - Show all commits
+6 -1
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@@ -772,7 +772,12 @@ func enrol(ctx context.Context, opts options) error {
// who knows its public key (novox/hq issue 083).
proof := mine.Sign(link.EnrolProof(token.Secret, mine.Public, mine.Overlay.Public,
sealing.Public, serving.Public))
reply, err := link.Enrol(ctx, token.Broker, token.Fingerprint, *name, token.Secret,
// The token says where to go and which certificate that address must present. It says nothing
// about which bus is there, and does not need to: every token names the one the mesh runs on
// today until the rollout (novox/hq ADR 0116 step 5), and that is what an empty Transport is.
reply, err := link.Enrol(ctx,
link.Approach{Address: token.Broker, Fingerprint: token.Fingerprint},
*name, token.Secret,
mine.Public, mine.Overlay.Public, sealing.Public, serving.Public, reported, proof, found,
opts.timeout)
if err != nil {
+55
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@@ -0,0 +1,55 @@
package link
import (
"context"
"time"
)
// The enrolment conversation, as the host's own words for it.
//
// **Its own seam rather than part of Link**, because almost nothing about it is the same. The
// credential is a one-time secret rather than this node's own; there is no declaration to hear; the
// whole exchange is a single question asked and possibly asked again. And the stakes differ: a node
// that fails here is not in the mesh at all, where a node that fails in Link has merely lost touch
// with one it belongs to.
// Approach is how a node reaches a mesh it does not yet belong to.
//
// The three things a token carries about where to go, and nothing about who is asking: the address,
// the certificate that address must present, and which bus is at the other end. **Every token names
// the bus the mesh runs on today until the rollout** (novox/hq ADR 0116 step 5), so an empty
// Transport is the ordinary case rather than something missing.
type Approach struct {
Address string
Fingerprint string
Transport string
}
// Asking is one open enrolment conversation.
type Asking interface {
// Ask puts the request to the mesh and waits for one answer, or says why none came.
//
// Called again, with the same bytes, while the mesh says "try again": the keys this node
// generated are the ones it keeps, so the same request is the same enrolment and the mesh holds
// the token for it (novox/hq issue 083).
Ask(ctx context.Context, request []byte, wait time.Duration) ([]byte, error)
// Close lets go of the connection made with the token.
Close()
}
// Present opens an enrolment conversation with the mesh.
//
// The connection is made before anything is sent, and the certificate is checked while it is being
// made — so a node pointed at the wrong bus finds out before its token has left the machine (ADR
// 0004).
func Present(ctx context.Context, to Approach, node, secret string,
timeout time.Duration) (Asking, error) {
switch to.Transport {
case OnNATS:
return presentNats(ctx, to, node, secret, timeout)
default:
return presentCurrent(ctx, to, node, secret, timeout)
}
}
+129
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@@ -0,0 +1,129 @@
package link
import (
"context"
"errors"
"fmt"
"net/url"
"time"
amqp "github.com/rabbitmq/amqp091-go"
)
// The enrolment conversation on the bus the mesh runs on today.
//
// Moved out of Enrol rather than changed. The reply travels on this node's own queue and is picked
// out by the correlation id the request carried, which is what this transport's reply field means
// and has always meant.
type currentAsking struct {
conn *amqp.Connection
channel *amqp.Channel
queue string
node string
replies <-chan amqp.Delivery
closed chan *amqp.Error
}
func presentCurrent(_ context.Context, to Approach, node, secret string,
timeout time.Duration) (Asking, error) {
config, err := PinnedConfig(to.Fingerprint)
if err != nil {
return nil, err
}
// The account name is the node's, and the password is the token's secret. Escaped because a name
// or secret containing a colon or an at-sign would otherwise change which host this connects to
// — a credential silently redirecting a connection is the worst shape this could take.
dsn := fmt.Sprintf("amqps://%s:%s@%s/",
url.QueryEscape(node), url.QueryEscape(secret), to.Address)
conn, err := amqp.DialConfig(dsn, amqp.Config{
TLSClientConfig: config,
Dial: amqp.DefaultDial(timeout),
})
if err != nil {
if errors.Is(err, ErrWrongCertificate) {
return nil, err
}
// Not quoted back: the DSN carries the one-time secret.
return nil, fmt.Errorf("cannot reach the broker at %s as %s: %w", to.Address, node, err)
}
channel, err := conn.Channel()
if err != nil {
conn.Close()
return nil, err
}
// This node's own queue, which its account is scoped to and nothing else may read.
queue, err := channel.QueueDeclare(QueueFor(node), true, false, false, false, nil)
if err != nil {
conn.Close()
return nil, fmt.Errorf("cannot declare this node's queue %s: %w", QueueFor(node), err)
}
replies, err := channel.Consume(queue.Name, "", true, false, false, false, nil)
if err != nil {
conn.Close()
return nil, err
}
return &currentAsking{
conn: conn, channel: channel, queue: queue.Name, node: node, replies: replies,
closed: conn.NotifyClose(make(chan *amqp.Error, 1)),
}, nil
}
func (a *currentAsking) Close() {
if a.channel != nil {
_ = a.channel.Close()
}
if a.conn != nil {
_ = a.conn.Close()
}
}
func (a *currentAsking) Ask(ctx context.Context, request []byte, wait time.Duration) ([]byte, error) {
correlation := fmt.Sprintf("%s-%d", a.node, time.Now().UnixNano())
publish, cancel := context.WithTimeout(ctx, wait)
defer cancel()
if err := a.channel.PublishWithContext(publish, Exchange, KeyEnrol, false, false,
amqp.Publishing{
ContentType: "application/json",
CorrelationId: correlation,
ReplyTo: a.queue,
Body: request,
}); err != nil {
return nil, fmt.Errorf("cannot publish to the %s exchange: %w", Exchange, err)
}
// Waited for rather than assumed. A published message that nothing answers means the control
// plane is not running, and a node that carried on regardless would believe it had joined a mesh
// that has never heard of it.
deadline := time.NewTimer(wait)
defer deadline.Stop()
for {
select {
case <-ctx.Done():
return nil, ctx.Err()
case reason := <-a.closed:
return nil, fmt.Errorf("the broker closed the connection: %v", reason)
case <-deadline.C:
return nil, fmt.Errorf(
"the broker accepted this node's connection and nothing answered within %s. The "+
"mesh's broker is running and its control plane is not", wait)
case delivery, ok := <-a.replies:
if !ok {
return nil, errors.New("the broker stopped delivering")
}
// Anything else on this queue is not the answer to this question.
if delivery.CorrelationId != correlation {
continue
}
return delivery.Body, nil
}
}
}
+166
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@@ -0,0 +1,166 @@
package link
import (
"context"
"crypto/rand"
"encoding/hex"
"errors"
"fmt"
"time"
"github.com/nats-io/nats.go"
)
// The enrolment conversation on the bus being built.
//
// **The reply address is the whole of what changes**, and it changes for a reason the transport
// forces rather than a preference. Core NATS request/reply puts the caller's inbox in the message's
// reply field and a plain responder answers it — but this request goes into a stream, and a message
// a JetStream consumer delivers has had that field claimed for the consumer's own ack address. So by
// the time the controller reads the request, the transport's reply field names where the
// *controller* must acknowledge. Verified against a running server (design 25 §2).
//
// The address therefore travels as a field of the request, and this subscribes it before publishing:
// a node that published first could miss an answer to a question nobody was listening for.
// enrolInbox is where a node enrolling waits.
//
// Under `_INBOX.enrol.<node>.`, which is exactly what its enrolment user may subscribe and no
// wider — so an answer sealed to one machine cannot be read by another enrolling beside it. The
// random tail is this attempt's own: a reply left over from an attempt that timed out is not the
// answer to this question, which is what the correlation id does on the other transport.
func enrolInbox(node string) (string, error) {
tail := make([]byte, 8)
if _, err := rand.Read(tail); err != nil {
return "", fmt.Errorf("cannot make a reply address: %w", err)
}
return "_INBOX.enrol." + node + "." + hex.EncodeToString(tail), nil
}
type natsAsking struct {
conn *nats.Conn
js nats.JetStreamContext
inbox string
answers *nats.Subscription
lost chan error
}
func presentNats(_ context.Context, to Approach, node, secret string,
timeout time.Duration) (Asking, error) {
config, err := PinnedConfig(to.Fingerprint)
if err != nil {
return nil, err
}
inbox, err := enrolInbox(node)
if err != nil {
return nil, err
}
lost := make(chan error, 1)
// The user is this token's own — `enrol.<node>`, which may publish the enrolment subject and
// subscribe its own inbox and nothing else (design 25 §6). The secret is its password, the same
// string the request claims, so the server proves somebody holds the token and the request
// proves the same thing to the controller without it having to ask the server who connected.
conn, err := nats.Connect(natsURL(to.Address),
nats.Secure(config),
nats.UserInfo("enrol."+node, secret),
nats.Name("mesh-host/enrol/"+node),
nats.Timeout(timeout),
nats.NoReconnect(),
nats.DisconnectErrHandler(func(_ *nats.Conn, err error) {
select {
case lost <- fmt.Errorf("the bus closed the connection: %w", err):
default:
}
}),
)
if err != nil {
if errors.Is(err, ErrWrongCertificate) {
return nil, err
}
// Not quoted back with the credential: the secret is one-time and still a secret.
return nil, fmt.Errorf("cannot reach the bus at %s as %s: %w", to.Address, node, err)
}
js, err := conn.JetStream()
if err != nil {
conn.Close()
return nil, fmt.Errorf("the bus at %s has no JetStream: %w", to.Address, err)
}
// Subscribed before anything is published, so an answer cannot arrive before there is anywhere
// for it to land.
answers, err := conn.SubscribeSync(inbox)
if err != nil {
conn.Close()
return nil, fmt.Errorf("this node cannot listen for the mesh's answer: %w", err)
}
if err := conn.Flush(); err != nil {
conn.Close()
return nil, fmt.Errorf("this node's reply address did not reach the bus: %w", err)
}
return &natsAsking{conn: conn, js: js, inbox: inbox, answers: answers, lost: lost}, nil
}
func (a *natsAsking) Close() {
if a.answers != nil {
_ = a.answers.Unsubscribe()
}
if a.conn != nil {
a.conn.Close()
}
}
// Ask publishes the request with this attempt's reply address written into it, and waits there.
func (a *natsAsking) Ask(ctx context.Context, request []byte, wait time.Duration) ([]byte, error) {
addressed, err := withReplyTo(request, a.inbox)
if err != nil {
return nil, err
}
publish, cancel := context.WithTimeout(ctx, wait)
defer cancel()
// Into the stream and awaited: an enrolment the bus never accepted must fail here rather than be
// assumed, because the node has nothing else to go on.
if _, err := a.js.Publish(EnrolSubject, addressed, nats.Context(publish)); err != nil {
return nil, fmt.Errorf("cannot ask the mesh to enrol this node: %w", err)
}
// Waited for rather than assumed. A published message that nothing answers means the controller
// is not running, and a node that carried on regardless would believe it had joined a mesh that
// has never heard of it.
//
// **The wait may legitimately be several store-window cycles long**: the controller naks the
// request with a delay while its store is restarting, and the node is waiting on the other side
// of that — which is exactly the combination that would have delivered the answer to a caller
// who had given up, had the address travelled in the transport's field.
answered, cancelAnswer := context.WithTimeout(ctx, wait)
defer cancelAnswer()
for {
msg, err := a.answers.NextMsgWithContext(answered)
switch {
case err == nil:
return msg.Data, nil
case errors.Is(err, context.DeadlineExceeded):
select {
case reason := <-a.lost:
return nil, reason
default:
}
return nil, fmt.Errorf(
"the bus accepted this node's connection and nothing answered within %s. The mesh's "+
"bus is running and its controller is not", wait)
case errors.Is(err, context.Canceled):
return nil, ctx.Err()
default:
select {
case reason := <-a.lost:
return nil, reason
default:
}
return nil, fmt.Errorf("waiting for the mesh's answer: %w", err)
}
}
}
+135
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@@ -0,0 +1,135 @@
package link
import (
"context"
"encoding/json"
"testing"
"time"
"github.com/nats-io/nats.go"
)
// The enrolment round trip against a real server.
//
// **This is the test that keeps a reason from becoming folklore.** The reply address travels in the
// request's payload because a JetStream consumer's delivery has had the transport's reply field
// claimed for its own ack address — which is a fact about a server, not a rule anybody can check by
// reading. Both halves are asserted here: that the field really is eaten, and that the answer
// reaches the node anyway.
//
// docker run -d --rm --name t -p 14223:4222 nats:2.10-alpine -js
// MESH_TEST_NATS=nats://127.0.0.1:14223 go test ./internal/link/ -run TestNatsAnEnrolment
// asking is a conversation on a bus with no TLS. Built directly rather than through Present because
// the pin is what Present adds and PinnedConfig's own tests cover it; what is under test here is the
// address the answer comes back on.
func asking(t *testing.T, conn *nats.Conn, js nats.JetStreamContext, node string) *natsAsking {
t.Helper()
inbox, err := enrolInbox(node)
if err != nil {
t.Fatal(err)
}
answers, err := conn.SubscribeSync(inbox)
if err != nil {
t.Fatal(err)
}
if err := conn.Flush(); err != nil {
t.Fatal(err)
}
a := &natsAsking{conn: conn, js: js, inbox: inbox, answers: answers, lost: make(chan error, 1)}
t.Cleanup(a.Close)
return a
}
// theMeshAnswers stands in for the controller: it consumes the enrolment off the stream, reads the
// reply address out of the payload — never from the transport field — and answers there. It reports
// what the transport field actually held, which is the claim design 25 §2 rests on.
func theMeshAnswers(t *testing.T, conn *nats.Conn, js nats.JetStreamContext,
reply EnrolReply) <-chan string {
t.Helper()
sawReplyField := make(chan string, 1)
sub, err := js.Subscribe(EnrolSubject, func(msg *nats.Msg) {
select {
case sawReplyField <- msg.Reply:
default:
}
var addressed struct {
ReplyTo string `json:"reply_to"`
}
if err := json.Unmarshal(msg.Data, &addressed); err != nil || addressed.ReplyTo == "" {
_ = msg.Ack()
return
}
body, _ := json.Marshal(reply)
// Published explicitly to the address the payload named, never msg.Respond — which would
// send it to whatever the transport's reply field holds, and that is the point.
_ = conn.Publish(addressed.ReplyTo, body)
_ = msg.Ack()
}, nats.Durable("controller-standin"), nats.ManualAck())
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() { _ = sub.Unsubscribe() })
return sawReplyField
}
// An enrolment is answered on the address the request carried, and the transport's own reply field
// held something else entirely.
func TestNatsAnEnrolmentIsAnsweredOnTheAddressInItsPayload(t *testing.T) {
conn, js := aBus(t)
const node = "joining"
sawReplyField := theMeshAnswers(t, conn, js, EnrolReply{Accepted: true, Node: node, Password: "p"})
a := asking(t, conn, js, node)
request, _ := json.Marshal(EnrolRequest{Node: node, Secret: "t"})
answer, err := a.Ask(context.Background(), request, 8*time.Second)
if err != nil {
t.Fatalf("no answer reached the node: %v", err)
}
var reply EnrolReply
if err := json.Unmarshal(answer, &reply); err != nil {
t.Fatal(err)
}
if !reply.Accepted || reply.Node != node {
t.Fatalf("the answer was not the mesh's: %+v", reply)
}
// And the field the answer would have gone to, had it used the transport's: the consumer's own
// ack address. If a future server stopped doing this, the payload-borne address would still
// work and this line is what would say the reason had changed.
select {
case field := <-sawReplyField:
if field == a.inbox {
t.Fatalf("the transport's reply field held this node's inbox (%s), so the payload "+
"address is no longer load-bearing — check design 25 §2 before relying on it", field)
}
if field == "" {
t.Fatal("the transport's reply field was empty rather than claimed, which is a third " +
"behaviour from the two design 25 §2 describes")
}
case <-time.After(2 * time.Second):
t.Fatal("the stand-in never saw the request")
}
}
// A request that names no reply address is not answered, and the node says so as a mesh that is not
// running rather than hanging. The controller has nowhere to send an answer, which is the failure
// the payload field exists to make impossible — asserted so that a request built without it fails
// loudly here rather than quietly on a machine.
func TestNatsAnEnrolmentWithNoReplyAddressIsNotAnswered(t *testing.T) {
conn, js := aBus(t)
const node = "silent"
theMeshAnswers(t, conn, js, EnrolReply{Accepted: true, Node: node})
a := asking(t, conn, js, node)
// Published without going through Ask, so the reply address is genuinely absent.
request, _ := json.Marshal(EnrolRequest{Node: node, Secret: "t"})
if _, err := js.Publish(EnrolSubject, request); err != nil {
t.Fatal(err)
}
if _, err := a.Ask(context.Background(), []byte(`{"node":"`+node+`"}`), 0); err == nil {
t.Fatal("a node with no answer coming was told it had one")
}
}
+49 -113
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@@ -6,10 +6,7 @@ import (
"encoding/json"
"errors"
"fmt"
"net/url"
"time"
amqp "github.com/rabbitmq/amqp091-go"
)
// The wire format shared with the control plane, which defines it separately because this binary
@@ -53,6 +50,16 @@ type EnrolRequest struct {
// on a token this key already spent (novox/hq issue 083).
Proof []byte `json:"proof,omitempty"`
// ReplyTo is where the mesh's answer goes, as a field of the request rather than the
// transport's own reply address (design 25 §2). Written by the transport that needs it —
// withReplyTo, once per attempt — because a request going into a stream has had the transport's
// reply field claimed for the consumer's ack address before the controller ever reads it.
//
// Empty on the bus the mesh runs on today, where the delivery carries the reply queue and the
// field means what it has always meant. Named here so both sides of the wire hold the same
// field name, which is what the shape test on each side is for.
ReplyTo string `json:"reply_to,omitempty"`
// Tunnel is the tunnel this node found and whose key it took as its overlay key (novox/hq ADR
// 0105): everything about it but that key. Sent with the keys because it is one of them —
// OverlayKey above IS this tunnel's public key when this is set — and the mesh composes the
@@ -147,52 +154,15 @@ func answered(reply EnrolReply, asking time.Duration) (again bool, err error) {
// was issued and the secret is its password. So this is not how the node gets in — it is what it
// says once it is in, and the secret travels again because the control plane must not have to ask
// the broker who connected.
func Enrol(ctx context.Context, address, pin, node, secret string, public []byte,
func Enrol(ctx context.Context, to Approach, node, secret string, public []byte,
overlayKey, sealingKey, servingKey string, profile map[string]any, proof []byte,
tunnel *Tunnel, timeout time.Duration) (EnrolReply, error) {
config, err := PinnedConfig(pin)
if err != nil {
return EnrolReply{}, err
}
// The account name is the node's, and the password is the token's secret. Escaped because a
// name or secret containing a colon or an at-sign would otherwise change which host this
// connects to — a credential silently redirecting a connection is the worst shape this could
// take.
dsn := fmt.Sprintf("amqps://%s:%s@%s/",
url.QueryEscape(node), url.QueryEscape(secret), address)
conn, err := amqp.DialConfig(dsn, amqp.Config{
TLSClientConfig: config,
Dial: amqp.DefaultDial(timeout),
})
if err != nil {
if errors.Is(err, ErrWrongCertificate) {
return EnrolReply{}, err
}
// Not quoted back: the DSN carries the one-time secret.
return EnrolReply{}, fmt.Errorf("cannot reach the broker at %s as %s: %w", address, node, err)
}
defer conn.Close()
channel, err := conn.Channel()
if err != nil {
return EnrolReply{}, err
}
defer channel.Close()
// This node's own queue, which its account is scoped to and nothing else may read.
queue, err := channel.QueueDeclare(QueueFor(node), true, false, false, false, nil)
if err != nil {
return EnrolReply{}, fmt.Errorf(
"cannot declare this node's queue %s: %w", QueueFor(node), err)
}
replies, err := channel.Consume(queue.Name, "", true, false, false, false, nil)
asking, err := Present(ctx, to, node, secret, timeout)
if err != nil {
return EnrolReply{}, err
}
defer asking.Close()
request := EnrolRequest{Node: node, Secret: secret, PublicKey: public,
OverlayKey: overlayKey, SealingKey: sealingKey, ServingKey: servingKey, Profile: profile,
@@ -202,81 +172,47 @@ func Enrol(ctx context.Context, address, pin, node, secret string, public []byte
return EnrolReply{}, err
}
// Asked, and asked again with the same request while the mesh says "try again": the keys
// this node generated are the ones it keeps, so the same request is the same enrolment, and
// the mesh holds the token for it (novox/hq issue 083).
ask := func() (string, error) {
correlation := fmt.Sprintf("%s-%d", node, time.Now().UnixNano())
publish, cancel := context.WithTimeout(ctx, timeout)
defer cancel()
if err := channel.PublishWithContext(publish, Exchange, KeyEnrol, false, false,
amqp.Publishing{
ContentType: "application/json",
CorrelationId: correlation,
ReplyTo: queue.Name,
Body: body,
}); err != nil {
return "", fmt.Errorf("cannot publish to the %s exchange: %w", Exchange, err)
}
return correlation, nil
}
correlation, err := ask()
if err != nil {
return EnrolReply{}, err
}
// Asked, and asked again with the same request while the mesh says "try again": the keys this
// node generated are the ones it keeps, so the same request is the same enrolment, and the mesh
// holds the token for it (novox/hq issue 083).
began := time.Now()
// Waited for rather than assumed. A published message that nothing answers means the control
// plane is not running, and a node that carried on regardless would believe it had joined a
// mesh that has never heard of it.
deadline := time.NewTimer(timeout)
defer deadline.Stop()
closed := conn.NotifyClose(make(chan *amqp.Error, 1))
for {
answer, err := asking.Ask(ctx, body, timeout)
if err != nil {
return EnrolReply{}, err
}
var reply EnrolReply
if err := json.Unmarshal(answer, &reply); err != nil {
return EnrolReply{}, fmt.Errorf("the mesh's answer could not be read: %w", err)
}
again, err := answered(reply, time.Since(began))
if err != nil {
return reply, err
}
if !again {
return reply, nil
}
select {
case <-ctx.Done():
return EnrolReply{}, ctx.Err()
case reason := <-closed:
return EnrolReply{}, fmt.Errorf("the broker closed the connection: %v", reason)
case <-deadline.C:
return EnrolReply{}, fmt.Errorf(
"the broker accepted this node's connection and nothing answered within %s. The "+
"mesh's broker is running and its control plane is not", timeout)
case delivery, ok := <-replies:
if !ok {
return EnrolReply{}, errors.New("the broker stopped delivering")
}
// Anything else on this queue is not the answer to this question.
if delivery.CorrelationId != correlation {
continue
}
var reply EnrolReply
if err := json.Unmarshal(delivery.Body, &reply); err != nil {
return EnrolReply{}, fmt.Errorf("the mesh's answer could not be read: %w", err)
}
again, err := answered(reply, time.Since(began))
if err != nil {
return reply, err
}
if !again {
return reply, nil
}
select {
case <-ctx.Done():
return EnrolReply{}, ctx.Err()
case <-time.After(AskAgainAfter):
}
if correlation, err = ask(); err != nil {
return EnrolReply{}, err
}
if !deadline.Stop() {
select {
case <-deadline.C:
default:
}
}
deadline.Reset(timeout)
case <-time.After(AskAgainAfter):
}
}
}
// withReplyTo writes this attempt's reply address into the request, as a field of its own.
//
// **Written into the bytes rather than carried beside them**, because the whole point is that the
// address survives a stream: a JetStream consumer's delivery has had the transport's reply field
// claimed for its own ack address, so a reply address that is not in the payload is one the
// controller cannot read (design 25 §2). Done by decoding and re-encoding rather than by setting the
// field before marshalling, so one request can be asked again with a fresh address each time without
// the caller knowing that is what happens.
func withReplyTo(request []byte, inbox string) ([]byte, error) {
var fields map[string]any
if err := json.Unmarshal(request, &fields); err != nil {
return nil, fmt.Errorf("this node's own enrolment request cannot be read back: %w", err)
}
fields["reply_to"] = inbox
return json.Marshal(fields)
}
+5
View File
@@ -28,6 +28,11 @@ import (
// answer to novox/hq issue 107. What the drain in run.go still answers is the live case: three
// pushes to a *connected* node are three deliveries whatever the stream later retains.
// EnrolSubject is where a joining machine asks. One subject for every node, because a machine
// enrolling has no name the mesh has agreed to yet — which is why its authority to publish here is
// the whole of what its enrolment user may do.
const EnrolSubject = "mesh.control.enrol"
// DeclareSubject is where this node's declaration lands. Its own, and no other node's: a host's
// account subscribes exactly this and the subject is the authority on which node a declaration is
// for.